ASFAW ADUGNA | Biological Sciences | Best Researcher Award

Dr. ASFAW ADUGNA | Biological Sciences | Best Researcher Award

Sr. Maize Breeder & Breeding Lead – Africa from Advanta Seeds Ltd., Kenya

Dr. Asfaw Adugna Ageru is a distinguished plant breeder specializing in maize and sorghum, with over two decades of experience in agricultural research and development across Africa. Currently serving as the Senior Maize Breeder and Maize Breeding Lead for Africa at Advanta Seeds Ltd., a UPL Group company, he is based in Eldoret, Kenya. Dr. Adugna’s career encompasses significant roles at the Ethiopian Institute of Agricultural Research (EIAR), where he contributed to the development and release of multiple crop varieties tailored to diverse agro-ecological zones. His expertise extends to leading collaborative projects with international institutions, focusing on crop improvement, genetic diversity, and sustainable agriculture. Dr. Adugna’s work has been instrumental in enhancing food security and resilience among smallholder farmers in sub-Saharan Africa.

Professional Profile

Education

Dr. Adugna holds a Ph.D. in Applied Genetics from Addis Ababa University, Ethiopia, completed between 2008 and 2012. His doctoral research included a collaborative component at The Ohio State University, USA, where he served as a visiting research scientist. He earned his M.Sc. in Plant Breeding and Genetics from Punjab Agricultural University, Ludhiana, India, in 2002, and a B.Sc. in Plant Production and Dryland Farming from Hawassa University, Ethiopia, in 1997. Further enhancing his expertise, Dr. Adugna obtained certificates in Private Public Partnership from Galilee International Management Institute, Israel, in 2021, and in Business Strategy from Cornell University, USA, in 2019.

Professional Experience

Dr. Adugna’s professional journey began at the Ethiopian Institute of Agricultural Research (EIAR), where he served from 1998 to 2013 in various capacities, including Senior Researcher in Sorghum and Millets Breeding. He later joined Advanta Seeds Ltd., taking on roles such as Sorghum Breeding Lead for Africa and currently, Senior Maize Breeder and Maize Breeding Lead for Africa. His responsibilities have encompassed leading breeding programs, coordinating research projects, and overseeing the development and release of improved crop varieties. Dr. Adugna has also contributed to international collaborations, serving as a visiting research scientist at The Ohio State University and participating in numerous global training programs and workshops.

Research Interests

Dr. Adugna’s research interests focus on plant breeding, genetics, and the development of crop varieties adapted to diverse environmental conditions. He has a particular interest in the genetic improvement of maize and sorghum, aiming to enhance yield, drought tolerance, and resistance to pests and diseases. His work also explores the implications of crop-wild gene flow on the environment and the utilization of molecular markers in breeding programs. Dr. Adugna is committed to advancing sustainable agricultural practices and improving food security through scientific innovation.

Research Skills

Dr. Adugna possesses a comprehensive skill set in plant breeding and genetics, including expertise in conventional breeding techniques, molecular marker-assisted selection, and genomic analysis. He is adept at designing and implementing breeding programs, conducting field trials, and analyzing data to inform decision-making. His proficiency extends to project management, grant writing, and collaboration with international research institutions. Dr. Adugna’s skills have been instrumental in the successful development and release of multiple crop varieties across Africa.

Awards and Honors

Throughout his career, Dr. Adugna has received several accolades recognizing his contributions to agricultural research. He was awarded a scholarship by the Agricultural Research and Training Program (ARTP) of the Ethiopian Institute of Agricultural Research to pursue his M.Sc. studies. Additionally, he received a Ph.D. research grant from the Biotechnology, Biodiversity Interface (BBI) program of USAID, facilitating his doctoral studies at Addis Ababa University and The Ohio State University. Dr. Adugna’s work has been acknowledged through invitations to contribute to reports by organizations such as The World Bank Group and the Food and Agriculture Organization (FAO).

Conclusion

Dr. Asfaw Adugna Ageru’s extensive experience in plant breeding, coupled with his commitment to sustainable agriculture and food security, positions him as a leading figure in agricultural research in Africa. His contributions to the development of improved maize and sorghum varieties have had a significant impact on smallholder farmers, enhancing productivity and resilience in the face of environmental challenges. Dr. Adugna’s collaborative approach, engaging with international research institutions and contributing to global agricultural initiatives, underscores his dedication to advancing scientific knowledge and practical solutions in agriculture. His work continues to inspire and drive progress in the field of plant breeding and genetics.

Publications Top Notes

  • Efforts in Maize (Zea mays L.) Breeding for Coping With Multiple Stresses in Sub‐Saharan Africa

    • Year: 2025

    • Author(s): Asfaw Adugna

  • Expression of Concern: AFLP-Based Analysis of Genetic Diversity, Population Structure, and Relationships with Agronomic Traits in Rice Germplasm from North Region of Iran and World Core Germplasm Set

    • Year: 2019

    • Author(s): K. Sorkheh, M. Masaeli, M.H. Chaleshtori, A. Adugna, S. Ercisli

  • Pulses-millets crop diversification by smallholders and their potential for sustainable food and nutrition security

    • Year: 2018

    • Author(s): M. Tesfai, U.S. Nagothu, A. Adugna

  • Study of growth and physiological characters in stay-green QTL introgression Sorghum bicolor (L.) lines under post-flowering drought stress

    • Year: 2018

    • Author(s): S. Sintayehu, A. Adugna, M. Fetene, A. Tirfessa, K. Ayalew

  • Indirect estimates reveal the potential of transgene flow in the crop-wild-weed Sorghum bicolor complex in its centre of origin, Ethiopia

    • Year: 2017

    • Author(s): A. Adugna, E. Bekele

  • AFLP-Based Analysis of Genetic Diversity, Population Structure, and Relationships with Agronomic Traits in Rice Germplasm from North Region of Iran and World Core Germplasm Set

    • Year: 2016

    • Author(s): K. Sorkheh, M. Masaeli, M.H. Chaleshtori, A. Adugna, S. Ercisli

  • Assessment of recent bottlenecks and estimation of effective population size in the Ethiopian wild sorghum using simple sequence repeat allele diversity and mutation models

    • Year: 2015

    • Author(s): A. Adugna, E. Bekele

  • Analysis of in situ diversity and population structure in Ethiopian cultivated Sorghum bicolor (L.) landraces using phenotypic traits and SSR markers

    • Year: 2014

    • Author(s): A. Adugna

  • Status and trends of food security in Ethiopia (Book Chapter – Duplicate Entries with Slight Metadata Variations)

    • Year: 2014

    • Author(s): M. Tesfai, A. Adugna, U.S. Nagothu

  • Ecotypic variation for seed dormancy, longevity and germination requirements in wild/weedy Sorghum bicolor in Ethiopia: Implications for seed mediated transgene dispersal and persistence

    • Year: 2013

    • Author(s): A. Adugna

 

Kindye Belaye Wassie | Biological Sciences | Best Researcher Award

Mr. Kindye Belaye Wassie | Biological Sciences | Best Researcher Award

LECTURER from Bahir Dar University, Ethiopia

Kindye Belaye Wassie is an Ethiopian plant scientist specializing in forest biodiversity and ecosystem resilience. Currently a lecturer and researcher at Bahir Dar University’s Department of Plant Sciences, he has contributed to the understanding of how diverse biological systems interact within forest environments. With a focus on enhancing conservation and management strategies, his research aims to secure the long-term sustainability of these critical ecosystems. Kindye has published several peer-reviewed articles in international journals, covering topics such as woody species composition, ethnobotanical knowledge of wild edible plants, and the regeneration status of local forests. His academic work is complemented by practical community service research, such as nutrient profiling and minimum tillage demonstrations. Through teaching undergraduate courses and guiding students, Kindye plays a vital role in shaping the next generation of plant scientists. His ongoing projects reflect a commitment to addressing both scientific and practical challenges in Ethiopian forestry and plant science. Though still in the earlier stages of his research career, his dedication, technical expertise, and publication record position him as a promising figure in the field.

Professional Profile

Education

Kindye Belaye Wassie completed his Bachelor of Science degree in Applied Biology at Debre Tabor University, Ethiopia, from 2011 to 2014. Building on this foundation, he pursued a Master of Science degree in Biology, with a specialization in Botanical Sciences, at Bahir Dar University, where he graduated in 2019. His educational path reflects a strong focus on plant biology, taxonomy, and ecological systems, providing him with the scientific grounding necessary for his research on forest ecosystems. Through his formal academic training, Kindye gained essential knowledge of biological principles, laboratory methods, plant ecology, and data analysis techniques. These degrees have prepared him not only for research roles but also for university-level teaching. His educational progression shows a steady commitment to advancing his expertise in botanical sciences and positions him well for doctoral-level research or more advanced academic roles in the future. With his combination of foundational biological training and specialized botanical studies, Kindye has built the expertise needed to investigate critical issues related to biodiversity, conservation, and the resilience of forest ecosystems.

Professional Experience

Kindye Belaye Wassie has accumulated a decade of professional experience in both academic support and research roles. From September 2014 to October 2022, he served as Chief Laboratory Assistant at the Department of Biology, Debre Tabor University. In this role, he developed strong technical expertise in biological laboratory operations, supporting research projects and educational activities. Since November 2022, he has been a lecturer and researcher at Bahir Dar University, where he teaches undergraduate courses in plant taxonomy, plant ecology, plant morphology and anatomy, ethnobotany, and plant physiology. His teaching duties are complemented by an active research agenda focusing on forest biodiversity, conservation, and ecosystem resilience. In addition to academic teaching and research, Kindye engages in community service research projects, such as demonstrating minimum tillage techniques for local farmers. His professional experience reflects a balanced combination of laboratory management, classroom teaching, fieldwork, and scholarly research, which together build a strong foundation for his future academic and research career.

Research Interest

Kindye Belaye Wassie’s primary research interest lies in understanding how forest biodiversity influences the function and resilience of forest ecosystems. He aims to integrate various biological groupings into unified frameworks that inform conservation and sustainable management practices. His work seeks to address critical challenges such as species composition changes, regeneration status, and ecosystem responses to environmental pressures. By focusing on biodiversity, Kindye’s research contributes to the development of conservation strategies that help preserve the ecological integrity and long-term viability of Ethiopian forests. In addition to ecological studies, he explores ethnobotanical knowledge, examining how local communities use wild edible plants and the cultural significance of plant resources. His research encompasses both theoretical and applied dimensions, linking scientific understanding with real-world conservation and resource management challenges. Ultimately, Kindye’s research interest reflects a commitment to advancing knowledge that supports both biodiversity preservation and community well-being in ecologically sensitive regions.

Research Skills

Kindye Belaye Wassie possesses a wide range of research skills that enhance his capacity as a plant scientist. He is proficient in biological laboratory techniques, including plant identification, vegetation data collection, culturing fungal pathogens, and conducting microbiology assays such as media preparation and bacterial culturing. His data analysis skills include using statistical software such as SPSS and R programming, allowing him to handle quantitative ecological and ethnobotanical data effectively. In the field, he has experience designing and implementing ecological surveys, assessing species composition, and evaluating regeneration status in forest areas. Kindye also has expertise in phytochemical screening, nutrient profiling, and soil quality assessments, which are critical for applied research projects focused on ecosystem rehabilitation. His communication and interpersonal skills support his ability to collaborate with colleagues, engage with local communities, and present findings at conferences. Collectively, these research skills position him to conduct robust, multi-faceted studies that integrate laboratory, field, and analytical approaches in the service of conservation and ecological research.

Awards and Honors

While Kindye Belaye Wassie has not yet received major research awards, he has earned certificates for presenting his work at both national and international conferences. These recognitions reflect his engagement with the broader scientific community and his willingness to share and discuss his research findings. Participation in academic conferences provides valuable opportunities for networking, feedback, and professional development. Although the award record is still developing, his growing publication list and active research projects indicate the potential for future recognition as his career progresses. Strengthening his awards portfolio by applying for research grants, early-career fellowships, or conservation prizes would further enhance his academic profile. Overall, his current honors and conference participation highlight his commitment to scholarly engagement and his emerging presence in the field of plant science and forest ecology research.

Conclusion

Kindye Belaye Wassie demonstrates solid potential as a researcher in plant sciences, with a particular focus on biodiversity, conservation, and ethnobotanical knowledge. His educational background, professional experience, and research outputs position him well within the Ethiopian academic landscape, and his recent publications show a clear commitment to advancing scientific understanding of forest ecosystems. While his profile is still in the early to mid stages of development, especially regarding high-impact publications, international collaborations, and major research awards, he shows promise as an emerging scholar. To strengthen his candidacy for high-level research awards, he may benefit from expanding his international research network, pursuing larger collaborative projects, and seeking leadership roles in grant-funded initiatives. Overall, Kindye’s combination of scientific expertise, teaching contributions, and applied research efforts makes him a valuable contributor to the field, and with continued professional growth, he has the potential to achieve broader research impact and recognition in the future.

Publications Top Notes

  1. Title: Ethnobotanical Study of Wild-Edible Plants in Simada District, South Gondar Zone, Amhara Region, Ethiopia
    Journal: Ethnobiology Letters
    Publication Date:Authors: Kindye Belaye Wassie2024-12-26
    Authors: Kindye Belaye Wassie

  2. Title: Woody species composition, structure and regeneration status of Alka forest Beyeda District, North Gondar Zone, Amhara Region, Northern Ethiopia
    Journal: BMC Plant Biology
    Publication Date: 2024- 11- 21 DOI: 10.1186/ s12870- 024- 05822- x Authors: Kindye Belaye Wassie; Getnet Chekole W2024-11-21
    DOI: 10.1186/s12870-024-05822-x
    Authors: Kindye Belaye Wassie; Getnet Chekole Walle; Assefa Tasew Alemnew

  3. Title: Ethnobotanical Study of Wild Edible Plants and Their Indigenous Knowledge in Sedie Muja District, South Gondar Zone, Northwestern Ethiopia
    Journal: American Journal of Plant Sciences
    Publication Date: 2022-02-23
    Authors: Kindye Belaye Wassie

Shengtai Bian | Molecular Biology | Best Researcher Award

Assoc. Prof. Dr. Shengtai Bian | Molecular Biology | Best Researcher Award

Association Professor from BEIJING SPORT UNIVERSITY, China

Dr. Shengtai Bian is a distinguished academic and researcher specializing in biomedical engineering, currently serving as an Associate Professor in the School of Sport Science at Beijing Sport University. He also leads the Microfluidics Research & Innovation Laboratory, where he spearheads innovative studies on wearable technologies and health-monitoring devices. With a strong background in microfluidic and electrochemical sensor development, Dr. Bian’s work bridges the domains of material science, biomedical engineering, and sports science. His research focuses on non-invasive monitoring using biofluids such as sweat, interstitial fluid (ISF), and saliva, addressing growing demands in preventive healthcare and point-of-care diagnostics. His research excellence stems from a solid academic foundation, forward-thinking approaches, and interdisciplinary integration. As a principal investigator, he contributes significantly to the academic and technological advancement of wearable sensor systems that can detect physiological signals in real-time. Dr. Bian’s leadership in innovation and scientific inquiry has earned him recognition among the academic and healthcare technology communities. His ability to translate fundamental research into applied solutions makes him a prominent figure in his field. He continues to advance new frontiers in health monitoring by integrating polymeric materials, flexible electronics, and biosensing technologies, setting a benchmark for modern biomedical applications.

Professional Profile

Education

Dr. Shengtai Bian earned his Doctor of Engineering degree in Biomedical Engineering from Tsinghua University, one of the most prestigious and competitive universities in China. Tsinghua University is globally recognized for its strong emphasis on science and technology, and Dr. Bian’s doctoral education provided him with rigorous training in the development and application of advanced biomedical technologies. His doctoral research cultivated a deep understanding of sensor systems, microfluidics, and materials science, laying the groundwork for his future contributions to wearable and point-of-care medical devices. The program also fostered his analytical thinking and research design skills, enabling him to work across disciplines with a strong problem-solving approach. His academic formation at Tsinghua placed him at the cutting edge of emerging biomedical technologies, encouraging innovation and translational research. In addition to core biomedical engineering competencies, Dr. Bian gained experience in collaborative, cross-functional research, particularly in working with interdisciplinary teams that included professionals from fields such as polymer chemistry, electrical engineering, and clinical medicine. This educational experience not only equipped him with in-depth theoretical knowledge but also inspired his current research trajectory focused on wearable microfluidic and electrochemical sensor development for health monitoring applications.

Professional Experience

Dr. Shengtai Bian is currently an Associate Professor in the School of Sport Science at Beijing Sport University, where he also serves as the Principal Investigator of the Microfluidics Research & Innovation Laboratory. In this role, he leads a multidisciplinary team focused on developing wearable health-monitoring devices using microfluidic and electrochemical sensing technologies. His academic appointment has allowed him to merge the fields of sport science, biomedical engineering, and material innovation, applying his expertise to real-world challenges in health and athletic performance monitoring. Dr. Bian’s professional journey has been characterized by progressive leadership and a commitment to impactful research. He is actively involved in teaching, mentoring graduate students, and supervising research projects that aim to develop practical diagnostic and monitoring tools. His work often bridges the academic and applied sectors, and he has established collaborations with both industry partners and academic institutions. Beyond his responsibilities in academia, Dr. Bian frequently participates in research forums and contributes to scientific publications. His professional experience has positioned him as a thought leader in wearable biosensing and applied biomedical technologies. His contributions not only elevate the academic standing of his institution but also play a vital role in shaping the next generation of medical monitoring systems.

Research Interest

Dr. Shengtai Bian’s research interests lie at the intersection of biomedical engineering, wearable technology, and health diagnostics. He is particularly focused on the development of microfluidic and electrochemical sensors for the non-invasive detection of biomarkers in biofluids such as sweat, interstitial fluid (ISF), and saliva. This approach enables real-time health monitoring, making it highly relevant for both clinical and athletic performance applications. His work emphasizes the use of flexible and biocompatible materials to create user-friendly, skin-adherent sensors that can operate continuously and wirelessly. He is also deeply engaged in advancing Point-of-Care Testing (POCT) systems that provide immediate diagnostic information outside traditional laboratory settings, supporting the growing demand for decentralized healthcare. Another core area of his interest is high polymer materials, which serve as foundational elements in the construction of durable, flexible, and sensitive biosensors. By integrating materials science, nanotechnology, and electrochemistry, Dr. Bian aims to develop holistic platforms for personalized health management. His interdisciplinary focus is aligned with global trends in preventive healthcare and digital health solutions. Ultimately, Dr. Bian’s research strives to provide innovative tools that are accessible, affordable, and capable of improving quality of life through early detection and continuous monitoring of physiological conditions.

Research Skills

Dr. Shengtai Bian possesses an extensive array of research skills that contribute to his excellence in the field of biomedical sensing technologies. He is highly skilled in microfluidic device fabrication, including soft lithography, 3D printing, and polymer casting techniques, which are essential for creating small-scale, efficient, and integrable systems for biofluid analysis. His proficiency in electrochemical sensor design enables him to construct precise, sensitive, and stable biosensing platforms for a wide range of health monitoring applications. Dr. Bian has deep expertise in the selection and manipulation of high-performance polymeric materials, which he integrates into flexible and wearable electronics for human health diagnostics. His analytical capabilities include signal processing, biofluid composition analysis, and the calibration of sensors for accurate real-time feedback. Moreover, Dr. Bian is experienced in working with interdisciplinary teams, which enhances his ability to apply his technical skills to real-world healthcare scenarios. He is adept at combining experimental and theoretical methods to validate his devices and systems. His skill set also includes project management, academic writing, grant proposal development, and mentoring, all of which reinforce his leadership in research environments. Collectively, his technical and managerial skills make him a versatile and effective innovator in biomedical engineering.

Awards and Honors

While specific awards and honors for Dr. Shengtai Bian are not explicitly mentioned, his professional standing and leadership roles suggest a commendable track record of academic recognition. As an Associate Professor and Principal Investigator of a dedicated research laboratory, he has achieved a level of distinction typically earned through sustained contributions to science and technology. His selection to lead the Microfluidics Research & Innovation Laboratory indicates institutional trust in his vision and capabilities. Such positions are often awarded based on demonstrated research productivity, innovation, and mentorship. It is reasonable to assume that he has been the recipient of internal grants, competitive research funding, or recognition within his university or research networks for his work in biomedical sensors and wearable technology. Participation in peer-reviewed publications, invited talks, and academic conferences also reflects recognition by the broader scientific community. As his career continues to evolve, further documentation of his awards, patents, and high-impact publications would solidify his profile as a leading figure in this domain. Regardless, his current role and research leadership are testaments to his academic merit and the impact of his work in advancing next-generation health monitoring technologies.

Conclusion

Dr. Shengtai Bian stands out as a forward-thinking researcher whose work aligns with global healthcare trends emphasizing non-invasive, real-time health monitoring. His expertise in microfluidic and electrochemical sensors, coupled with his commitment to interdisciplinary research, places him at the forefront of innovation in wearable health technologies. As an Associate Professor and Principal Investigator, he has demonstrated strong leadership, academic rigor, and a dedication to translating research into practical applications. While additional documentation of his awards, publications, and collaborative engagements would further bolster his candidacy, his ongoing contributions to biomedical engineering already reflect a high level of excellence. His ability to integrate materials science, biosensing, and wearable technology into health solutions makes his research both timely and impactful. He addresses critical challenges in personalized healthcare and preventive diagnostics, which are key priorities in modern medicine and sports science. In conclusion, Dr. Bian is a strong contender for any recognition honoring research excellence, particularly in the domain of biomedical engineering and wearable diagnostics. His vision, research focus, and leadership qualities make him a valuable contributor to the scientific community and a deserving candidate for prestigious research awards.

Publications Top Notes

  1. Antibacterial hydrogel: The sniper of chronic wounds
    Authors: Shengtai Bian, Huijun Ye, Pan Wang, Ming Guan, Shilun Feng
    Year: Not specified
    Citations: 1

Muhammad Aurangzeib | Biological Sciences | Young Scientist Award

Mr. Muhammad Aurangzeib | Biological Sciences | Young Scientist Award

Northeast Agricultural University, China

Muhammad Aurangzeib is a dedicated soil and environmental scientist with a strong focus on sustainable agriculture, climate resilience, and environmental impact. Currently pursuing a Ph.D. in Agroecology and Climate Change at Northeast Agricultural University in Harbin, China, he has developed a robust background in quantitative analysis, climate adaptation strategies, and agroecosystem management. His research primarily investigates the role of biochar in enhancing soil fertility and crop yield, particularly in acidic soils. With a commendable academic record and a series of publications in reputable journals, Aurangzeib demonstrates a commitment to interdisciplinary research aimed at addressing global food security and climate challenges. His work not only contributes to scientific knowledge but also offers practical solutions for sustainable land management.

Professional Profile

Education

Muhammad Aurangzeib’s academic journey reflects a consistent focus on soil science and environmental studies. He earned his B.Sc. (Hons.) in Agriculture with a major in Soil Science and Environment from Bahauddin Zakariya University, Multan, Pakistan, in 2015. He continued at the same institution to complete his M.Sc. (Hons.) in Soil Science in 2017, where his thesis explored potassium fractionation in different textured soils. Currently, he is pursuing a Ph.D. in Agroecology and Climate Change at Northeast Agricultural University, Harbin, China, expected to be completed in 2025. His doctoral research examines the effects of biochar on physicochemical properties, greenhouse gas emissions, and grain yield in acidic soils, under the supervision of Prof. Dr. Shaoliang Zhang. This educational background has equipped him with a deep understanding of soil chemistry, fertility, and sustainable agricultural practices.

Professional Experience

Aurangzeib’s professional experience encompasses research, teaching, and practical applications in soil science. He has served as a Research Assistant at Bahauddin Zakariya University, where he analyzed micronutrients in citrus plants and soils and conducted experiments on fertilizer and biochar applications. His role involved using atomic absorption spectrophotometry and other analytical techniques. Additionally, he worked as a Researcher on a project funded by the Higher Education Commission of Pakistan, focusing on potassium fractionation in soils. Beyond research, Aurangzeib has contributed to academia as a Lecturer and Head of the Biology Department at Superior Group of Colleges in Multan, teaching undergraduate courses and developing curricula. His internships at Exin Chemical Corporation and the Soil Salinity Research Institute provided hands-on experience in soil analysis and fertilizer validation, further solidifying his practical skills in the field.

Research Interests

Aurangzeib’s research interests are centered on sustainable soil management and climate change mitigation. He is particularly interested in the application of biochar and nano-biochar as strategies to improve soil fertility and crop yields. His work aims to develop integrated prediction models using deep machine learning algorithms that consider soil texture, rainfall intensity, land use patterns, and biochar properties to forecast biochar’s effectiveness in enhancing agricultural productivity. His research also explores the impact of biochar on greenhouse gas emissions and soil physicochemical properties, contributing to the broader goals of environmental sustainability and food security.

Research Skills

Aurangzeib possesses a diverse set of research skills that support his scientific endeavors. He is proficient in programming with R-Studio, specializing in prediction modeling. His expertise extends to various analytical and statistical software, including ArcGIS Pro, Origin Pro, SPSS, XLSTAT, GraphPad Prism, and Microsoft Office Suite. He is adept at using atomic absorption spectrophotometry for nutrient analysis and has experience in soil and plant sample preparation and analysis. His technical skills are complemented by his ability to design and conduct experiments, analyze complex datasets, and interpret results within the context of environmental and agricultural sciences.

Awards and Honors

Throughout his academic and professional career, Aurangzeib has received recognition for his contributions to soil science and environmental research. Notably, he was awarded the Best Debater in the Sino-foreign debate competition in 2023, where his team secured the first position. He has actively participated in international workshops and seminars, such as the “International Workshop on Mollisols Erosion and Degradation” in Harbin, China, and the “China-Russia Grain Production and Food Science” seminar. His engagement in these events reflects his commitment to continuous learning and collaboration within the global scientific community.

Conclusion

Muhammad Aurangzeib exemplifies the qualities of a dedicated researcher committed to advancing sustainable agricultural practices and addressing environmental challenges. His academic achievements, practical experience, and research contributions position him as a valuable asset in the field of soil science. His focus on biochar applications for soil improvement and climate change mitigation aligns with global efforts to enhance food security and environmental sustainability. Aurangzeib’s interdisciplinary approach and commitment to scientific excellence make him a strong candidate for recognition, such as the Best Researcher Award, and underscore his potential to make significant contributions to the field.

Publications Top Notes

  1. Biochar application strategies mediating the soil temperature, moisture and salinity during the crop seedling stage in Mollisols
    Authors: Sihua Yan, Shaoliang Zhang, Pengke Yan, Muhammad Aurangzeib, Guohui Tao
    Journal: Science of the Total Environment
    Year: 2025
  2.  Key factors influencing the spatial distribution of soil organic carbon and its fractions in Mollisols
    Authors: Xiaoguang Niu, Shaoliang Zhang, Chengbo Zhang, Mingke Song, Muhammad Aurangzeib
    Year: Not specified (likely 2025)
    Citations: 1

Sajad Rostami | Biological Sciences | Innovative Research Award

Assoc. Prof. Dr. Sajad Rostami | Biological Sciences | Innovative Research Award

Associate Professor from Shahrekord University, Iran

Sajad Rostami is a dedicated researcher and academic with a strong background in nanotechnology, polymer science, and biomedical engineering. With extensive hands-on experience in laboratory research and industrial settings, he has established himself as a promising innovator in the field of materials science. His expertise lies in the synthesis and characterization of advanced nanomaterials, drug delivery systems, and polymer-based composites for medical applications. Sajad has demonstrated a keen ability to bridge the gap between fundamental research and practical applications, contributing to numerous interdisciplinary projects involving both academia and industry. His contributions include co-authoring peer-reviewed publications, participating in scientific conferences, and actively collaborating with international researchers. In addition to his technical knowledge, he has honed his analytical and critical thinking skills through rigorous experimentation and data interpretation. Known for his work ethic, problem-solving abilities, and collaborative nature, Sajad continues to push the boundaries of science by pursuing innovative approaches to address current challenges in biomedicine and material engineering. He is also passionate about mentoring students and participating in educational outreach programs. As he advances in his career, Sajad aims to leverage his interdisciplinary knowledge to develop smart and sustainable materials that can significantly impact the fields of healthcare, diagnostics, and environmental protection.

Professional Profile

Education

Sajad Rostami’s educational journey reflects his commitment to academic excellence and specialization in materials science and nanotechnology. He obtained his Ph.D. in Nanoscience and Nanotechnology from the Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, Iran. During his doctoral studies, he focused on the design and development of nanomaterials for drug delivery applications, with a strong emphasis on polymer-based carriers and targeted delivery systems. His dissertation work involved extensive synthesis and surface functionalization of nanoparticles for enhanced therapeutic performance and controlled release mechanisms. Prior to his Ph.D., Sajad earned his Master’s degree in Polymer Engineering from Amirkabir University of Technology (Tehran Polytechnic), one of the top-ranked engineering institutions in Iran. His master’s thesis centered on the development of novel biocompatible polymers for use in biomedical applications. He also completed his undergraduate studies in Chemical Engineering, which laid the foundation for his understanding of chemical processes, thermodynamics, and process optimization. Throughout his academic career, Sajad has received various scholarships and recognitions for his outstanding academic performance and research contributions. His educational background combines theoretical depth with practical laboratory training, positioning him as a well-rounded researcher equipped to tackle modern challenges in material science and bioengineering.

Professional Experience

Sajad Rostami has cultivated a robust professional portfolio through a blend of academic research, industrial collaboration, and scientific project management. As a Postdoctoral Researcher at the Department of Chemical Engineering at Tarbiat Modares University, he was involved in developing advanced drug delivery systems and polymer-based hydrogels for tissue engineering applications. During his tenure, he led multiple projects that combined polymer chemistry with nanotechnology to create materials that mimic biological functions. He also served as a Research Associate in collaboration with leading pharmaceutical companies, contributing to the scaling-up of nanoformulations and optimizing synthesis protocols for commercial applications. Additionally, Sajad has gained valuable teaching experience, mentoring graduate and undergraduate students in subjects such as nanomaterials, polymer science, and chemical engineering principles. His role as a scientific consultant for biotech startups has allowed him to apply his research knowledge to solve real-world problems, particularly in the development of biocompatible materials and diagnostic platforms. He is proficient in project planning, laboratory management, and scientific communication, often leading interdisciplinary teams in publishing research papers and submitting grant proposals. Sajad’s professional experience reflects his versatility and adaptability in both academic and industry-focused research environments, making him a valuable contributor to cutting-edge innovations in materials and biomedical sciences.

Research Interests

Sajad Rostami’s research interests lie at the intersection of nanotechnology, polymer science, and biomedical engineering. He is particularly fascinated by the development of smart nanomaterials for targeted drug delivery and regenerative medicine. His work involves designing and synthesizing functionalized polymers and nanocomposites with stimuli-responsive properties that can be tailored for specific therapeutic applications. A significant portion of his research focuses on biodegradable and biocompatible materials that mimic the extracellular matrix, supporting cell growth and tissue regeneration. He is also interested in surface modification techniques to improve the efficacy of drug carriers, enhance cellular uptake, and achieve controlled drug release. Additionally, Sajad explores the integration of nanomaterials with diagnostic platforms to create multifunctional systems for disease detection and monitoring. His interdisciplinary approach combines chemical engineering, materials science, and life sciences to address critical healthcare challenges. He is currently exploring the potential of natural and synthetic polymers for 3D bioprinting, scaffold fabrication, and wound healing applications. With a strong belief in the translational potential of science, Sajad seeks to bridge academic research with clinical needs by creating materials that not only perform well in vitro but also demonstrate effectiveness in in vivo environments. His research contributes to the advancement of personalized and precision medicine.

Research Skills

Sajad Rostami possesses an impressive array of research skills that span experimental techniques, analytical instrumentation, and scientific communication. He is highly skilled in the synthesis and characterization of nanomaterials, especially polymer-based drug delivery systems and nanocomposites. His technical expertise includes methods such as electrospinning, emulsion polymerization, and sol-gel processing for material fabrication. Sajad is proficient in various characterization tools including Fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), transmission electron microscopy (TEM), dynamic light scattering (DLS), and zeta potential analysis. These techniques allow him to thoroughly analyze material morphology, composition, and surface properties. In addition, he has hands-on experience in drug release profiling, cytotoxicity assays, and in vitro cell culture studies, which are essential for biomedical applications. He is also adept at statistical analysis and using software tools such as MATLAB, Origin, and SPSS for data interpretation. Sajad’s research is often interdisciplinary, requiring collaboration with professionals from biology, chemistry, and engineering backgrounds. His effective communication skills enable him to write high-quality scientific articles, deliver impactful presentations, and participate in grant writing. Furthermore, he has mentored junior researchers, managed laboratory safety protocols, and maintained detailed documentation of experimental procedures. These diverse research skills have made him a competent and dependable scientific professional.

Awards and Honors

Throughout his academic and research career, Sajad Rostami has received several awards and honors in recognition of his excellence in research and scholarly contributions. He has been the recipient of prestigious research scholarships during his Ph.D. studies, granted by the Institute for Advanced Studies in Basic Sciences (IASBS), based on his academic achievements and research performance. His master’s thesis on biocompatible polymers earned distinction and was selected among the top theses in the field of polymer engineering. In recognition of his scientific publications in high-impact journals, he has been honored by his home institutions and invited to speak at national and international conferences. Sajad has also received awards for best poster and oral presentations in various scientific symposia, where he presented innovative findings related to drug delivery and nanomaterials. He has been acknowledged for his role in collaborative research projects, especially those with industrial partners, showcasing his ability to translate research into application. Moreover, he has actively participated in science outreach and mentoring activities, earning appreciation certificates for his contributions to student development programs. These accolades reflect his dedication to academic excellence, innovation, and service to the scientific community, reinforcing his role as an emerging leader in nanoscience and biomedical research.

Conclusion

Sajad Rostami is a dynamic and forward-thinking researcher whose work exemplifies the integration of materials science with biomedical innovation. With a strong educational foundation and diverse professional experiences, he has made significant contributions to the field of nanotechnology and polymer engineering. His research not only advances scientific knowledge but also holds practical implications for drug delivery, tissue engineering, and medical diagnostics. By maintaining a multidisciplinary approach and a strong collaborative spirit, Sajad continues to explore new frontiers in the design of functional biomaterials. His dedication to mentoring, outreach, and academic leadership further highlights his commitment to shaping the next generation of scientists. With a blend of technical acumen, creativity, and perseverance, he remains focused on solving critical challenges in healthcare through material innovation. As he continues his professional journey, Sajad seeks to foster meaningful partnerships between academia and industry to facilitate the real-world application of his research. His vision is to develop smarter, safer, and more effective biomedical solutions that can positively impact patient lives. With an unwavering passion for science and a clear sense of purpose, Sajad Rostami stands as a valuable contributor to the global scientific community and a promising figure in the future of biomedical materials research.

Publications Top Notes

  1. Intensified biodiesel production through two-disk hydrodynamic reactors: process design and optimization using RSM
    Authors: Asghar Khodadadi, Sajad Rostami, Ebrahim Fayyazi
    Journal: Biofuels
    Year: 2025

  2. Optimization of methyl ester synthesis using gas/liquid phase pulsed discharge plasma in a novel oscillatory slug flow reactor
    Authors: Mohammadreza Asghari, Bahram Hosseinzadeh Samani, Rahim Ebrahimi, Sajad Rostami, Ebrahim Fayyazi
    Journal: Journal of Renewable and Sustainable Energy
    Year: 2024

  3. Development of plasma-activated water (PAW) system: molecular dynamics simulation and experimental study on almond aflatoxins
    Authors: Mohammad Javad Aarabi, Sajad Rostami, Bahram Hosseinzadeh Samani, Firouzeh Nazari
    Journal: Journal of Food Processing and Preservation
    Year: 2024
    Citations: 1

 

 

Sayan Chakraborty | Molecular Biology | Best Researcher Award

Assist. Prof. Dr. Sayan Chakraborty | Molecular Biology | Best Researcher Award

Assistant Professor of Oncology from Roswell Park Comprehensive Cancer Center, United States

Dr. Sayan Chakraborty is an Assistant Professor of Oncology at Roswell Park Comprehensive Cancer Center, specializing in cancer biology and regenerative medicine. His research focuses on the role of extracellular matrix (ECM) proteins in cancer progression, particularly in liver cancer. With a strong background in microbiology, immunology, and cancer research, he has made significant contributions to understanding tumor microenvironments. Dr. Chakraborty has published extensively in high-impact journals, secured multiple research grants, and holds patents related to cancer diagnostics and therapies. He actively mentors Ph.D. students and postdoctoral researchers while serving on editorial boards of prestigious scientific journals. His work has been recognized through several national and international awards, including the A*STAR Career Development Award and Open Fund Young Investigator Grant. As an invited speaker at international conferences, he continues to shape the field of cancer research through his pioneering work in mechanotransduction and ECM-targeted therapies.

Professional Profile

Education

Dr. Chakraborty completed his Bachelor of Science (B.Sc.) in Zoology with honors from Presidency College, University of Calcutta, in 2006. He then pursued a Master of Science (M.Sc.) in Biochemistry at the University of Calcutta, graduating in 2008. His doctoral studies focused on the entry mechanisms of oncogenic human herpesvirus-8 (HHV-8/KSHV) and their role in Kaposi’s sarcoma development. He earned his Ph.D. from Rosalind Franklin University of Medicine and Sciences, USA, in collaboration with the Institute of Molecular and Cell Biology, Singapore. His postdoctoral training further refined his expertise in microbiology, immunology, and cancer research. With extensive training across renowned institutions in India, the USA, and Singapore, Dr. Chakraborty has built a strong foundation in cancer biology, extracellular matrix research, and mechanotransduction pathways in tumor progression.

Professional Experience

Dr. Chakraborty has held various research and academic positions across multiple prestigious institutions. He began his career as a Research Fellow at the Institute of Molecular and Cell Biology (IMCB), Singapore, in 2012. He was later promoted to Senior Research Fellow and then Research Assistant Professor at the same institute, focusing on cancer research and extracellular matrix dynamics. In 2022, he joined Roswell Park Comprehensive Cancer Center as an Assistant Professor of Oncology, where he is also a member of the Developmental Therapeutics Research Program. Additionally, he plays an active role in graduate education and experimental therapeutics programs. His research contributions extend beyond academia, as he serves as an editorial board member and peer reviewer for high-impact journals. His work in ECM-targeted cancer therapies and mechanotransduction has led to international recognition, positioning him as a key figure in oncology research.

Research Interests

Dr. Chakraborty’s research focuses on the role of extracellular matrix proteins in cancer progression and regenerative medicine. His laboratory investigates how tumor cells interact with ECM components, leading to changes in mechanotransduction pathways that drive oncogenic signaling. A major aspect of his work revolves around Agrin, a key ECM protein that promotes cancer progression through YAP/TAZ signaling and integrin-mediated mechanosensing. His studies explore how ECM-targeted strategies can disrupt tumor growth and angiogenesis, offering new therapeutic approaches for hepatocellular carcinoma and other cancers. Additionally, he is interested in the intersection of ECM biology and tissue regeneration, aiming to develop novel biomaterials for wound healing applications. His long-term research goal is to devise tumor-restraining strategies by targeting ECM components and their interactions with cancer cells, leading to more effective treatment options for patients.

Research Skills

Dr. Chakraborty has expertise in multiple advanced research methodologies, including molecular and cellular biology, cancer signaling, and mechanotransduction analysis. His laboratory specializes in ECM protein characterization, cancer cell migration assays, and 3D tumor modeling. He is proficient in high-resolution imaging techniques, such as confocal and electron microscopy, to analyze ECM-cancer interactions. Additionally, his skills in RNA sequencing, proteomics, and CRISPR-based gene editing allow for comprehensive molecular investigations in oncology. He has experience in preclinical cancer models, including xenograft and organoid systems, to study tumor microenvironments and evaluate potential therapeutics. His ability to integrate mechanobiology with cancer research has led to groundbreaking discoveries in ECM-targeted therapies. Beyond experimental techniques, he is skilled in grant writing, scientific publishing, and mentoring researchers, further contributing to the advancement of oncology research.

Awards and Honors

Dr. Chakraborty has received numerous accolades for his contributions to cancer research. He was awarded the Aparajita Memorial Gold Medallion for securing the first rank in his B.Sc. studies at Presidency College. He also received the CSIR-UGC Merit Scholarship and the University of Calcutta Foreign Scholarship for academic excellence. His doctoral work earned him the Dean’s Award for Outstanding Achievement in Research from Rosalind Franklin University. In Singapore, he was honored with the Early Career Research Award and the Open Fund Young Investigator Research Grant. His A*STAR Career Development Award recognized his pioneering work in ECM-targeted therapies. Recently, he secured the Cancer Center Support Grant at Roswell Park, further advancing his research into ECM and cancer therapeutics. These awards highlight his consistent excellence in research, funding acquisition, and scientific innovation.

Conclusion

Dr. Sayan Chakraborty is a leading researcher in cancer biology, with extensive contributions to understanding the extracellular matrix’s role in tumor progression. His research has led to the identification of ECM-targeted therapeutic strategies, with a particular focus on liver cancer. With a strong academic background, multiple international research experiences, and significant funding successes, he has established himself as a distinguished scientist in oncology. His mentorship, editorial roles, and extensive publication record further reflect his dedication to advancing cancer research. While his work is already making an impact, expanding clinical collaborations and large-scale translational studies could enhance the real-world applications of his findings. Dr. Chakraborty’s pioneering research, coupled with his leadership in the field, makes him a strong candidate for prestigious research awards and continued recognition in cancer biology.

Publications Top Notes

  1. Title: Agrin as a Mechanotransduction Signal Regulating YAP through the Hippo Pathway
    Authors: S. Chakraborty, K. Njah, A. Pobbati, Y.B. Lim, A. Raju, M. Lakshmanan, …
    Year: 2017
    Citations: 225

  2. Title: Kaposi’s sarcoma-associated herpesvirus latency in endothelial and B cells activates gamma interferon-inducible protein 16-mediated inflammasomes
    Authors: V.V. Singh, N. Kerur, V. Bottero, S. Dutta, S. Chakraborty, M.A. Ansari, …
    Year: 2013
    Citations: 175

  3. Title: An oncogenic role of Agrin in regulating focal adhesion integrity in hepatocellular carcinoma
    Authors: S. Chakraborty, M. Lakshmanan, H.L.F. Swa, J. Chen, X. Zhang, Y.S. Ong, …
    Year: 2015
    Citations: 155

  4. Title: Kaposi’s sarcoma-associated herpesvirus interacts with EphrinA2 receptor to amplify signaling essential for productive infection
    Authors: S. Chakraborty, M.V. Veettil, V. Bottero, B. Chandran
    Year: 2012
    Citations: 125

  5. Title: Kaposi’s sarcoma associated herpesvirus entry into target cells
    Authors: S. Chakraborty, M. Valiya Veettil, B. Chandran
    Year: 2012
    Citations: 110

  6. Title: Interaction of c-Cbl with Myosin IIA Regulates Bleb Associated Macropinocytosis of Kaposi’s Sarcoma-Associated Herpesvirus
    Authors: M.V. Veettil, S. Sadagopan, N. Kerur, S. Chakraborty, B. Chandran
    Year: 2010
    Citations: 82

  7. Title: Angiogenin functionally interacts with p53 and regulates p53-mediated apoptosis and cell survival
    Authors: S. Sadagopan, M.V. Veettil, S. Chakraborty, N. Sharma-Walia, N. Paudel, …
    Year: 2012
    Citations: 73

  8. Title: Reactive oxygen species are induced by Kaposi’s sarcoma-associated herpesvirus early during primary infection of endothelial cells to promote virus entry
    Authors: V. Bottero, S. Chakraborty, B. Chandran
    Year: 2013
    Citations: 65

  9. Title: EphrinA2 regulates clathrin mediated KSHV endocytosis in fibroblast cells by coordinating integrin-associated signaling and c-Cbl directed polyubiquitination
    Authors: D. Dutta, S. Chakraborty, C. Bandyopadhyay, M. Valiya Veettil, M.A. Ansari, …
    Year: 2013
    Citations: 63

  10. Title: Linking extracellular matrix agrin to the hippo pathway in liver cancer and beyond
    Authors: S. Chakraborty, W. Hong
    Year: 2018
    Citations: 60

  11. Title: c-Cbl-Mediated Selective Virus-Receptor Translocations into Lipid Rafts Regulate Productive Kaposi’s Sarcoma-Associated Herpesvirus Infection in Endothelial Cells
    Authors: S. Chakraborty, M. Valiya Veettil, S. Sadagopan, N. Paudel, B. Chandran
    Year: 2011
    Citations: 54

  12. Title: The extracellular matrix in hepatocellular carcinoma: Mechanisms and therapeutic vulnerability
    Authors: A.M. Roy, R. Iyer, S. Chakraborty
    Year: 2023
    Citations: 47

Adelson Rocha Dantas | Biological Sciences | Best Researcher Award

Dr. Adelson Rocha Dantas | Biological Sciences | Best Researcher Award

Visiting Researcher at Brazilian Agricultural Research Corporation, Brazil

Adelson Rocha Dantas is a distinguished researcher specializing in forest ecology and sustainable management. He currently holds the position of a Regional Scientific Development Fellow at CNPq – Level C. He obtained a Bachelor’s degree in Forestry Engineering from the State University of Amapá (UEAP) in 2011 and is currently pursuing a degree in Biological Sciences at the Federal University of Amapá. Additionally, he has a postgraduate specialization in Environmental Auditing and Expertise from the International Faculty of Curitiba (FACINTER). Dantas has been actively involved in scientific research since his undergraduate studies, holding research fellowships at various institutions, including Embrapa Amapá, where he worked on projects related to forest phenology, ecosystem ecology, and plant physiology. His primary research interests include the ecology of flooded forests, species phenology, dendrochronology, and sustainable forest management. He has contributed significantly to the study of the genus Carapa and its ecological interactions. Through his extensive academic and professional endeavors, Dantas continues to impact the field of tropical forest conservation and management. His work plays a crucial role in understanding climate change impacts on Amazonian biodiversity.

Professional Profile

Education

Adelson Rocha Dantas has a robust academic background in biological and environmental sciences. He earned a Ph.D. in Ecology from the National Institute for Amazonian Research (INPA) in 2021 under the guidance of Dr. Maria Teresa Fernandez Piedade, with research focusing on population ecology, floodplain forest ecology, seed dispersal, and dendroecology. Prior to this, he completed a Master’s degree in Forest Sciences at the Federal Rural University of Pernambuco (UFRPE) in 2015, supported by a CNPq scholarship, where he studied the population dynamics and spatial distribution of multi-use species in floodplain forests. His undergraduate degree in Forestry Engineering was obtained from the State University of Amapá (UEAP) in 2011. He further enhanced his expertise through a postgraduate course in Environmental Auditing and Expertise from FACINTER in 2012. Dantas has also pursued numerous supplementary courses, including dendroecology, environmental licensing, and statistical methodologies for research. In 2022, he completed a postdoctoral fellowship at Embrapa Amapá, where he advanced his research on forest ecology. His diverse educational background, complemented by specialized training in ecological analysis and conservation techniques, underscores his expertise in Amazonian forest ecosystems and sustainable management practices.

Professional Experience

Adelson Rocha Dantas has extensive professional experience in ecological research and sustainable forest management. Since 2022, he has been a Research Fellow at the Agroforestry Research Center of Amapá (Embrapa-AP), actively engaged in research and development projects. He has held multiple research roles, including serving as a Visiting Researcher at INPA from 2016 to 2021, where he contributed to ecological conservation initiatives. His career also includes multiple research fellowships funded by CNPq, beginning as a Scientific Initiation Fellow at UEAP from 2009 to 2010 and later as a Scientific and Technological Initiation Fellow at Embrapa-AP from 2010 to 2011. Throughout his career, Dantas has worked on key projects related to dendrochronology, forest ecology, and climate change impacts on Amazonian species. His expertise extends to field studies on the phenology and reproductive biology of economically significant tree species, such as Pentaclethra macroloba and Euterpe oleracea. Dantas has also been involved in research activities focused on understanding the temporal growth patterns and seed production dynamics of Bertholletia excelsa. His practical experience, combined with his academic background, positions him as a leading expert in Amazonian forest ecology and conservation.

Research Interests

Adelson Rocha Dantas’s research interests center on Amazonian forest ecology, with a particular focus on population ecology, dendroecology, and sustainable forest management. His work examines the ecological dynamics of floodplain forests and the impacts of climate change on key Amazonian tree species. He has conducted extensive studies on the phenology and reproductive biology of Pentaclethra macroloba and Carapa species, exploring their ecological interactions, growth patterns, and seed dispersal mechanisms. His research also integrates aspects of forest conservation, aiming to develop strategies for sustainable resource management. Another key area of his interest is dendrochronology, where he investigates the historical ecological patterns of Amazonian forests through tree ring analysis. Additionally, Dantas explores the adaptive strategies of floodplain species, assessing their response to environmental stressors such as hydrological fluctuations and deforestation. His commitment to ecological research contributes significantly to the conservation of Amazonian biodiversity and the development of policies for sustainable land use. Through his interdisciplinary approach, Dantas bridges the gap between theoretical ecology and applied conservation, ensuring the long-term sustainability of critical forest ecosystems in Brazil.

Research Skills

Adelson Rocha Dantas possesses a diverse set of research skills essential for ecological and environmental studies. His expertise includes field-based ecological data collection, dendrochronological analysis, and phenological monitoring of Amazonian species. He is proficient in statistical modeling and spatial analysis, employing tools such as R and GIS for ecological data interpretation. Dantas has experience in experimental design for forest ecology studies, including population dynamics assessments and long-term biodiversity monitoring. His laboratory skills include seed germination analysis, wood anatomy studies, and climate impact assessments on tree growth. He is also well-versed in environmental auditing techniques and sustainable forest management practices. His strong background in botanical taxonomy enables him to identify and classify Amazonian plant species accurately. Additionally, Dantas has developed expertise in ecological modeling, contributing to understanding species distribution patterns under changing environmental conditions. His interdisciplinary skill set supports his research contributions to conservation science, sustainable forestry, and climate adaptation strategies. Through his analytical and field research capabilities, Dantas continues to enhance knowledge about Amazonian ecosystems and inform conservation policies.

Awards and Honors

Adelson Rocha Dantas has received several awards and honors in recognition of his contributions to forest ecology and conservation science. As a recipient of multiple CNPq research scholarships, he has been acknowledged for his outstanding academic and research achievements. His doctoral and master’s studies were both funded by prestigious CNPq grants, underscoring the significance of his research in Amazonian ecology. Dantas has also been awarded fellowships for his postdoctoral research at Embrapa Amapá, where he has continued to make impactful contributions to sustainable forest management. His research projects on dendroecology and climate change adaptation have been recognized by national and international environmental research communities. Additionally, his participation in high-profile conservation initiatives has earned him accolades from academic institutions and ecological organizations. His expertise in forest phenology and sustainable resource management has positioned him as a key contributor to the field of tropical forestry. Through his dedication and scientific achievements, Dantas continues to receive recognition for his work in preserving the biodiversity of the Amazon Rainforest.

Conclusion

Adelson Rocha Dantas is a highly accomplished researcher dedicated to the study and conservation of Amazonian forests. His extensive education, professional experience, and research contributions have significantly advanced understanding of floodplain forest ecology and sustainable management practices. Through his work at Embrapa Amapá and other institutions, he has made invaluable contributions to the fields of dendrochronology, species phenology, and climate impact assessment. His research skills and interdisciplinary approach have provided critical insights into the adaptation mechanisms of Amazonian species, influencing conservation strategies and sustainable forestry policies. Dantas’s numerous awards and recognitions highlight his commitment to ecological research and environmental sustainability. His work continues to inform and support efforts to mitigate the impacts of climate change on forest ecosystems. As he advances in his career, his research remains essential to the preservation of biodiversity and the development of ecological policies in Brazil. His passion for environmental science and dedication to knowledge dissemination ensure that his contributions will have a lasting impact on tropical forest conservation and sustainable land management.

Publications Top Notes

  1. Effect of hydroclimatic seasonality on the phenological behavior of Euterpe oleracea in the Amazon estuary

    • Authors: Jaqueline Tavares Santos, Adelson Rocha Dantas, Marcelino Carneiro Guedes
    • Year: 2025
  2. Natural history of the hyperdominant tree, Pentaclethra macroloba (Willd.) Kuntze, in the Amazon River estuary

    • Authors: A. R. Dantas, C. C. Vasconcelos, M. C. Guedes, A. C. Lira-Guedes, M. T. F. Piedade
    • Year: 2024
  3. Reproductive and vegetative phenology database of two progenies of Euterpe oleracea Mart. planted in the Amazon estuary

    • Authors: Jaqueline Tavares Santos, A. R. Dantas, Marcelino Guedes
    • Year: 2024
  4. Population dynamics of Pentaclethra macroloba, a hyperdominant tree in the Amazon River estuary

    • Authors: Adelson Rocha Dantas, Leonardo Pequeno Reis, Marcelino Carneiro Guedes, Ana Cláudia Lira-Guedes, Ana Lícia Patriota Feliciano, Luiz Carlos Marangon
    • Year: 2023
  5. Effect of climate and flooding on the phenology of Attalea phalerata (Arecaceae) in a white‐water floodplain forest of the Amazon River

    • Authors: Rafael Neri Furtado, Marcelino Carneiro Guedes, Adelson Rocha Dantas, Ana Cláudia Lira‐Guedes, José Júlio de Toledo
    • Year: 2023
  6. Demographic and growth patterns of Pentaclethra macroloba (Willd.) Kuntze, a hyperdominant tree in the Amazon River estuary

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Ana Cláudia Lira‐Guedes, Jochen Schöngart, Maria Teresa Fernandez Piedade
    • Year: 2022
  7. Complexidade taxonômica e ampliação da área de ocorrência de Attalea phalerata Mart. ex Spreng. para o Estado do Amapá, Brasil

    • Authors: Tonny David Santiago Medeiros, Ana Cláudia Lira Guedes, Carlos Alberto Santos da Silva Junior, Raullyan Borja Lima e Silva, Ana Luzia Ferreira Farias, Sheylla Susan Moreira da Silva de Almeida, Adelson Rocha Dantas, Salustiano Vilar da Costa Neto, Patrick de Castro Cantuária
    • Year: 2021
  8. Phenological behavior and floral visitors of Pentaclethra macroloba, a hyperdominant tree in the Brazilian Amazon River estuary

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Ana Cláudia Lira-Guedes, Maria Teresa Fernandez Piedade
    • Year: 2021
  9. Morphology, germination, and geographic distribution of Pentaclethra macroloba (Fabaceae): a hyperdominant Amazonian tree

    • Authors: Adelson Rocha Dantas, Marcelino Carneiro Guedes, Caroline Da Cruz Da Cruz Vasconcelos, Jaynna Gonar Lobo Isacksson, Dayane Nathália Barbosa Pastana, Ana Cláudia Lira-Guedes, Maria Teresa Fernandez Piedade
    • Year: 2020
  10. Population dynamics of Attalea excelsa (Arecaceae) in floodplain forest of the Amazonian estuary

  • Authors: Adelson Rocha Dantas
  • Year: 2020

Jacques Beltrand | Biological Sciences | Best Researcher Award

Prof. Jacques Beltrand | Biological Sciences | Best Researcher Award

PUPH at Public Assistance – Paris Hospitals, France

Dr. Jacques Beltrand is a distinguished physician and researcher, specializing in pediatric endocrinology and diabetes. As a Professor of Pediatrics and Developmental Biology at Hôpital Necker Enfants Malades, he contributes to both clinical and academic environments. He is also the co-leader of a research team focused on immunology and genetics in diabetes and endocrine diseases at the renowned Institut Cochin in Paris. His work is pivotal in advancing pediatric care and endocrine research, with a particular focus on diabetes, metabolism, and nutritional influences on disease progression.

Professional Profile

Education:

Dr. Beltrand has a comprehensive medical and biological academic background. His medical studies began at the University of Toulouse in 1994, culminating in his medical doctorate, where he earned a Silver Medal. He completed his residency in pediatrics at the prestigious Assistance-Publique Hôpitaux de Paris. His specialization in pediatric endocrinology and diabetes was further honed with advanced degrees from the University of Paris 5. Dr. Beltrand’s education is complemented by a Master of Science in medical and biological sciences from the University of Paris 7 and a postdoctoral research fellowship at the Liggins Institute in New Zealand, focusing on pediatric endocrine diseases.

Professional Experience:

Dr. Beltrand’s professional journey spans clinical, academic, and research roles. He began his career in pediatrics and pediatric endocrinology with residency training in Paris. His clinical expertise led him to various leadership positions, such as Deputy Medical Director and Medical Director at the Health Center for Diabetic Youth in Miramont-de-Guyenne. In 2011, he began his research fellowship at INSERM in Paris, later transitioning to postdoctoral research in New Zealand. Since 2013, he has been serving as Assistant Professor at Hôpital Necker Enfants Malades, later being promoted to Professor in 2020. His expertise in pediatric endocrinology, diabetes, and metabolic diseases has significantly influenced both his clinical and academic roles.

Research Interest:

Dr. Beltrand’s research interests lie at the intersection of pediatric endocrinology, diabetes, metabolism, and nutritional science. He focuses on understanding the immunological and genetic aspects of diabetes and endocrine diseases in children. His investigations explore how early nutrition and metabolic factors influence diabetes development and the endocrine system’s functioning. Notably, his research on leptin therapy for children with congenital lipoatrophy and his studies on maternal diet impact on pancreatic cell development provide significant insights into managing diabetes in pediatric populations.

Research Skills:

Dr. Beltrand’s extensive research skills encompass a broad range of clinical and laboratory techniques. His expertise in pediatric endocrinology allows him to design and lead cutting-edge research projects. He has hands-on experience in studying genetic and immunological mechanisms underlying diabetes and endocrine disorders. Dr. Beltrand is adept in statistical analysis, particularly in the application of data to clinical outcomes. His involvement in international research collaborations further strengthens his ability to conduct complex studies and translate findings into clinical practices. His methodological expertise in designing and conducting multicenter trials is also a hallmark of his career.

Awards and Honors:

Dr. Beltrand has received numerous accolades throughout his career. These include the “Clinical Research Prize” from the Young Pediatrician Association in 2004, and the prestigious “Research Prize” from the Delessert Institute for his work on insulin secretion in children. His achievements include the Young Investigator Award from the European Society of Pediatric Endocrinology and multiple grants supporting his research on diabetes education and pediatric endocrinology. He has also earned awards for his contributions to nutrition research and clinical studies, including the “Nutrition Research Prize” from the Appert Institute and several prestigious grants from national research bodies. His recognition at both national and international levels underscores his leadership in the field.

Conclusion:

Dr. Jacques Beltrand exemplifies excellence in pediatric endocrinology and diabetes research, making substantial contributions through his clinical work, research leadership, and academic involvement. His impressive educational journey, coupled with his years of research and clinical experience, has positioned him as a leader in pediatric endocrinology and diabetes management. His research continues to advance our understanding of metabolic diseases, influencing both the clinical and academic landscapes. Dr. Beltrand’s recognition through awards and honors highlights his dedication to improving patient outcomes and advancing medical research. He remains an invaluable asset to the field, combining clinical care with groundbreaking research to benefit the next generation of pediatric patients.

Publication Top Notes

  • Cytotoxic and regulatory roles of mucosal-associated invariant T cells in type 1 diabetes
    • Authors: O Rouxel, L Beaudoin, I Nel, C Tard, L Cagninacci, B Kiaf, M Oshima, …
    • Published in: Nature Immunology 18 (12), 1321
    • Year: 2017
    • Citations: 237
  • Type I interferon-mediated autoinflammation due to DNase II deficiency
    • Authors: MP Rodero, A Tesser, E Bartok, GI Rice, E Della Mina, M Depp, B Beitz, …
    • Published in: Nature Communications 8 (1), 2176
    • Year: 2017
    • Citations: 228
  • Childhood craniopharyngioma: hypothalamus-sparing surgery decreases the risk of obesity
    • Authors: E Elowe-Gruau, J Beltrand, R Brauner, G Pinto, D Samara-Boustani, …
    • Published in: The Journal of Clinical Endocrinology & Metabolism 98 (6), 2376-2382
    • Year: 2013
    • Citations: 219
  • Offspring of mothers fed a high fat diet display hepatic cell cycle inhibition and associated changes in gene expression and DNA methylation
    • Authors: KJ Dudley, DM Sloboda, KL Connor, J Beltrand, MH Vickers
    • Published in: PLOS One 6 (7), e21662
    • Year: 2011
    • Citations: 214
  • Nature, nurture or nutrition? Impact of maternal nutrition on maternal care, offspring development and reproductive function
    • Authors: KL Connor, MH Vickers, J Beltrand, MJ Meaney, DM Sloboda
    • Published in: The Journal of Physiology 590 (9), 2167-2180
    • Year: 2012
    • Citations: 190
  • Glucose metabolism in 105 children and adolescents after pancreatectomy for congenital hyperinsulinism
    • Authors: J Beltrand, M Caquard, JB Arnoux, K Laborde, G Velho, V Verkarre, …
    • Published in: Diabetes Care 35 (2), 198-203
    • Year: 2012
    • Citations: 170
  • CACNA1H mutations are associated with different forms of primary aldosteronism
    • Authors: G Daniil, FL Fernandes-Rosa, J Chemin, I Blesneac, J Beltrand, M Polak, …
    • Published in: EBioMedicine 13, 225-236
    • Year: 2016
    • Citations: 160
  • Impact of fetal growth restriction on body composition and hormonal status at birth in infants of small and appropriate weight for gestational age
    • Authors: R Verkauskiene, J Beltrand, O Claris, D Chevenne, S Deghmoun, …
    • Published in: European Journal of Endocrinology 157 (5), 605-612
    • Year: 2007
    • Citations: 154
  • Consequences of intrauterine growth and early neonatal catch-up growth
    • Authors: O Claris, J Beltrand, C Levy-Marchal
    • Published in: Seminars in Perinatology 34 (3), 207-210
    • Year: 2010
    • Citations: 145
  • Management of neonates born to women with Graves’ disease: a cohort study
    • Authors: A Besançon, J Beltrand, I Le Gac, D Luton, M Polak
    • Published in: European Journal of Endocrinology 170 (6), 855-862
    • Year: 2014
    • Citations: 121

 

 

 

Bahram Fathi-Achachlouei | Biological Sciences | Best Researcher Award

Prof. Dr. Bahram Fathi-Achachlouei | Biological Sciences | Best Researcher Award

Dr. Bahram Fathi-Achachlouei is an Associate Professor of Food Science and Technology at the University of Mohaghegh Ardabili, Iran. He has an extensive academic and research background, with significant contributions to food science, focusing on functional foods, edible oils, and innovative processing techniques. With over two decades of academic and research experience, Dr. Fathi-Achachlouei has authored more than 20 research papers in esteemed journals and has actively contributed to the advancement of food science through collaborations and interdisciplinary projects. His expertise in the chemical characterization of food components and their applications has positioned him as a leading researcher in the field.

Professional Profile

Education

Dr. Fathi-Achachlouei completed his Ph.D. in Food Science and Technology at the University of Tabriz, Iran, from 2008 to 2012, with a focus on producing functional cheese through fat composition modification. He earned his Master’s degree in Food Science and Technology from the same university in 2003, where he conducted research on reducing patulin content in apple juice concentrate. His academic journey began with a Bachelor’s degree in Food Science and Technology from Urmia University in 2001. Each phase of his education reflects his dedication to addressing critical issues in food safety, nutrition, and technology.

Professional Experience

Dr. Fathi-Achachlouei began his academic career as a lecturer at the University of Mohaghegh Ardabili from 2003 to 2008. During his Ph.D., he furthered his research as a visiting scholar at the University College Cork, Ireland, where he explored innovative food science techniques. Upon earning his doctorate, he returned to the University of Mohaghegh Ardabili as an Assistant Professor in 2012. By 2016, he was promoted to Associate Professor, demonstrating his expertise in teaching and research. His professional journey showcases his commitment to advancing food science education and conducting impactful research.

Research Interests

Dr. Fathi-Achachlouei’s research interests include functional foods, edible oils, and food safety. He is particularly focused on modifying the composition of dairy products to enhance their nutritional value. His research also explores reducing harmful compounds in food products, such as patulin in apple juice. He has delved into the chemical and physical properties of edible oils, vegetable oils, and phytosterol oxidation products. Additionally, he investigates the impact of emerging technologies like microwave pretreatment on food quality. His interdisciplinary approach addresses challenges in food processing, nutritional enhancement, and quality assurance.

Research Skills

Dr. Fathi-Achachlouei possesses advanced research skills, including food component characterization using chromatographic and spectroscopic techniques. He has expertise in analytical chemistry methods, including solid-phase extraction, column chromatography, and encapsulation techniques for food bioactives. His proficiency in designing and optimizing food processing methods, coupled with his ability to evaluate the nutritional and physicochemical properties of food, underpins his research excellence. He also has experience in developing functional food products and investigating the effects of refining processes on food compounds.

Awards and Honors

Dr. Fathi-Achachlouei has received recognition for his scholarly contributions in food science. His publications in high-impact journals and his leadership in research projects have earned him accolades within the academic community. While specific awards and honors are not explicitly mentioned, his rapid progression to Associate Professor reflects the recognition of his expertise and achievements. His visiting researcher position at University College Cork is another indicator of his reputation in the global food science community.

Conclusion

Dr. Bahram Fathi-Achachlouei’s academic excellence, extensive research portfolio, and dedication to advancing food science make him a strong candidate for the Best Researcher Award. His innovative research in functional foods, food safety, and edible oils addresses critical global challenges. While his focus on publishing high-quality papers is commendable, further diversification into patents or industry collaborations could enhance his profile. Overall, his expertise and contributions to food science position him as a leader in his field.

Publication Top Notes

  • Effect of pretreatment with microwaves on oxidative stability and nutraceuticals content of oil from rapeseed
    • Authors: S. Azadmard-Damirchi, F. Habibi-Nodeh, J. Hesari, M. Nemati, …
    • Year: 2010
    • Citations: 375
  • Use of gelatin and gum Arabic for encapsulation of black raspberry anthocyanins by complex coacervation
    • Authors: R. Shaddel, J. Hesari, S. Azadmard-Damirchi, H. Hamishehkar, …
    • Year: 2018
    • Citations: 244
  • Fabrication and characterization of CMC-based nanocomposites reinforced with sodium montmorillonite and TiO2 nanomaterials
    • Authors: B. Fathi-Achachlouei, Y. Zahedi
    • Year: 2018
    • Citations: 159
  • Milk thistle seed oil constituents from different varieties grown in Iran
    • Authors: B. Fathi-Achachlouei, S. Azadmard-Damirchi
    • Year: 2009
    • Citations: 157
  • Microwave pretreatment as a promising strategy for increment of nutraceutical content and extraction yield of oil from milk thistle seed
    • Authors: B. Fathi-Achachlouei, S. Azadmard-Damirchi, Y. Zahedi, R. Shaddel
    • Year: 2019
    • Citations: 126
  • Double emulsion followed by complex coacervation as a promising method for protection of black raspberry anthocyanins
    • Authors: R. Shaddel, J. Hesari, S. Azadmard-Damirchi, H. Hamishehkar, …
    • Year: 2018
    • Citations: 117
  • Microwave pretreatment of seeds to extract high quality vegetable oil
    • Authors: S. Azadmard-Damirchi, K. Alirezalu, B. Fathi-Achachlouei
    • Year: 2011
    • Citations: 106
  • Physical and mechanical properties of hybrid montmorillonite/zinc oxide reinforced carboxymethyl cellulose nanocomposites
    • Authors: Y. Zahedi, B. Fathi-Achachlouei, A. R. Yousefi
    • Year: 2018
    • Citations: 102
  • The Effect of Ferrous Nano-oxide Particles on Physiological Traits and Nutritional Compounds of Soybean (Glycine max L.) Seed
    • Authors: R. Sheykhbaglou, M. Sedghi, B. Fathi-Achachlouei
    • Year: 2018
    • Citations: 69
  • Optimization of extraction process of bioactive compounds from Bene hull using subcritical water
    • Authors: R. Shaddel, A. Maskooki, M. H. Haddad-Khodaparast, S. Azadmard-Damirchi, …
    • Year: 2014
    • Citations: 33

 

 

Yanfeng Gao | Molecular Biology | Best Researcher Award

Dr. Yanfeng Gao | Molecular Biology | Best Researcher Award

Associate Professor at Wannan Medical College, China

Dr. Yanfeng Gao is an accomplished researcher specializing in microfluidics-based interdisciplinary science. His work spans analytical chemistry, point-of-care testing, and biomedical engineering, showcasing a strong ability to bridge diverse domains. Known for his exceptional technical skills in micro-nano fabrication, optical microscopy, and computer programming, Dr. Gao combines experimental expertise with a collaborative mindset, enabling successful teamwork in cross-cultural environments. His career is marked by groundbreaking contributions to areas such as inertial microfluidics, molecular diagnostics, and nanocatalysis-integrated chips. Dr. Gao’s commitment to innovation and excellence has earned him recognition through multiple awards and scholarships, underscoring his impact in both academia and applied research.

Professional Profile

Education

Dr. Gao’s educational journey reflects a dedication to academic excellence and a global outlook. He earned a Ph.D. in Fluid Mechanics from the Université Fédérale de Toulouse Midi-Pyrénées, France (2013–2018), focusing on inertial migration of particles in microchannel flows. His M.S. in Power Machinery and Engineering from Xi’an Jiaotong University (2011–2013) and Engineer’s degree in Mechanical Systems from Université de Technologie de Troyes, France (2009–2011), provided him with interdisciplinary expertise. He began his academic career with a B.S. in Process Equipment and Control Engineering at Xi’an Jiaotong University (2007–2009), establishing a solid foundation for his later work in biomedical and fluidic engineering.

Professional Experience

Dr. Gao’s professional experience is both diverse and impactful. He currently serves at Wannan Medical College (2024–present), focusing on micro-nano fabrication and translational medicine. Previously, at Nanjing University (2019–2024), he advanced bioanalysis, chemical synthesis, and gene editing using microfluidics. His tenure at the Chinese Academy of Sciences (2018–2019) involved developing micro flexible sensors, while earlier roles in France included designing microfluidic oscillators and separating microorganisms using inertial microfluidics. Each position has reinforced his expertise in interdisciplinary applications, from biomedical engineering to fluid mechanics, showcasing his ability to tackle complex challenges across industries.

Research Interests

Dr. Gao’s research interests center on cutting-edge applications of microfluidics and biomedical engineering. He is passionate about inertial microfluidics for particle manipulation, leveraging its potential for analytical and biomedical innovations. His work on nanocatalysis-integrated microfluidic chips aims to advance bioanalysis and molecular diagnostics. Additionally, he explores the CRISPR-Cas system to develop revolutionary point-of-care diagnostic tools. His expertise in micro-electro-mechanical systems (MEMS) fabrication underpins his efforts to bridge fundamental research and practical applications, demonstrating his commitment to advancing interdisciplinary science.

Research Skills

Dr. Gao possesses a versatile skill set that combines technical proficiency with computational expertise. He is experienced in programming languages like MATLAB and R, with familiarity in C++ and Fortran. His software expertise includes engineering tools such as Pro/ENGINEER, CATIA, SolidWorks, and AutoCAD, as well as data analysis tools like ggplot2 and Origin. Proficient in micro-nano fabrication and optical microscopy, he excels in translating complex research into innovative applications. His language fluency in Mandarin, English, and French facilitates international collaborations, enhancing his global research impact.

Awards and Honors

Dr. Gao’s excellence has been recognized through several prestigious awards. He was named a Double-Innovation Doctor of Jiangsu Province (2019) for his innovative research contributions. During his Ph.D. studies, he received the China Scholarship Council Fellowship (2013–2017), supporting his advanced research in France. Earlier in his academic career, he was awarded the Outstanding Student honor and the Siyuan Scholarship at Xi’an Jiaotong University (2008), reflecting his early dedication to academic and research excellence. These accolades underscore his exceptional abilities and commitment to advancing scientific knowledge.

Conclusion

Yanfeng Gao is a highly qualified researcher with a robust background in interdisciplinary science, especially microfluidics and biomedical engineering. His extensive academic and professional experience, technical expertise, and recognition through awards make him a strong candidate for the Best Researcher Award. However, including more detailed metrics of research impact and evidence of leadership roles could strengthen his application. If these areas are addressed, he would undoubtedly stand out as an exceptional contender for the award.

Publication Top Notes

  • Hypoxia‐responsive gene editing to reduce tumor thermal tolerance for mild‐photothermal therapy
    Authors: X. Li, Y. Pan, C. Chen, Y. Gao, X. Liu, K. Yang, X. Luan, D. Zhou, F. Zeng, …
    Journal: Angewandte Chemie 133 (39), 21370-21374
    Year: 2021
    Citations: 113
  • Migration of finite sized particles in a laminar square channel flow from low to high Reynolds numbers
    Authors: M. Abbas, P. Magaud, Y. Gao, S. Geoffroy
    Journal: Physics of Fluids 26 (12)
    Year: 2014
    Citations: 98
  • Gallium–Carbenicillin Framework Coated Defect‐Rich Hollow TiO2 as a Photocatalyzed Oxidative Stress Amplifier against Complex Infections
    Authors: J. Yang, C. Wang, X. Liu, Y. Yin, Y.H. Ma, Y. Gao, Y. Wang, Z. Lu, Y. Song
    Journal: Advanced Functional Materials 30 (43), 2004861
    Year: 2020
    Citations: 69
  • Gold nanoparticles doped metal-organic frameworks as near-infrared light-enhanced cascade nanozyme against hypoxic tumors
    Authors: X. Liu, Y. Pan, J. Yang, Y. Gao, T. Huang, X. Luan, Y. Wang, Y. Song
    Journal: Nano Research 13, 653-660
    Year: 2020
    Citations: 66
  • Nano-immunosorbent assay based on Cas12a/crRNA for ultra-sensitive protein detection
    Authors: Q. Zhao, Y. Pan, X. Luan, Y. Gao, X. Zhao, Y. Liu, Y. Wang, Y. Song
    Journal: Biosensors and Bioelectronics 190, 113450
    Year: 2021
    Citations: 55
  • Self-ordered particle trains in inertial microchannel flows
    Authors: Y. Gao, P. Magaud, L. Baldas, C. Lafforgue, M. Abbas, S. Colin
    Journal: Microfluidics and Nanofluidics 21, 1-10
    Year: 2017
    Citations: 55
  • Emerging trends in organ-on-a-chip systems for drug screening
    Authors: Y. Wang, Y. Gao, Y. Pan, D. Zhou, Y. Liu, Y. Yin, J. Yang, Y. Wang, Y. Song
    Journal: Acta Pharmaceutica Sinica B 13 (6), 2483-2509
    Year: 2023
    Citations: 41
  • Mesopore to macropore transformation of metal–organic framework for drug delivery in inflammatory bowel disease
    Authors: Y. Yin, J. Yang, Y. Pan, Y. Gao, L. Huang, X. Luan, Z. Lin, W. Zhu, Y. Li, Y. Song
    Journal: Advanced Healthcare Materials 10 (3), 2000973
    Year: 2021
    Citations: 38
  • Hollow covalent organic framework-sheltering CRISPR/Cas12a as an in-vivo nanosensor for ATP imaging
    Authors: Y. Pan, X. Luan, F. Zeng, Q. Xu, Z. Li, Y. Gao, X. Liu, X. Li, X. Han, J. Shen, …
    Journal: Biosensors and Bioelectronics 209, 114239
    Year: 2022
    Citations: 37
  • Inertial lateral migration and self-assembly of particles in bidisperse suspensions in microchannel flows
    Authors: Y. Gao, P. Magaud, C. Lafforgue, S. Colin, L. Baldas
    Journal: Microfluidics and Nanofluidics 23, 1-14
    Year: 2019
    Citations: 35