Chi He | Air Pollution | Best Researcher Award

Prof . Chi He | Air Pollution | Best Researcher Award

Professor from Xi’an Jiaotong University, China

Dr. Chi He is a distinguished academic and researcher in the field of environmental engineering, currently serving as a Full Professor at Xi’an Jiaotong University, China. With a robust portfolio of over 260 publications and more than 12,000 citations, he has earned international recognition for his contributions to environmental catalysis, air pollution control, and functional nanomaterials. His scholarly excellence is underscored by a high H-index of 66, and multiple ESI highly cited papers. Dr. He’s research aims to tackle some of the most pressing environmental challenges through the design of novel catalytic materials and pollution remediation strategies. He is actively involved in national and international collaborations and holds leadership roles as Dean of the Department of Environmental Science and Engineering and Director of the Center of Environmental Materials and Pollution Prevention Technology. He is also affiliated with the University of Chinese Academy of Sciences as an adjunct professor. In addition to his academic work, Dr. He has filed 48 patents, 21 of which have been authorized, and contributed to several textbooks. His career is marked by a dynamic fusion of scientific rigor, innovation, and dedication to environmental sustainability, making him a strong candidate for accolades such as the Best Researcher Award.

Professional Profile

Education

Dr. Chi He obtained his Doctorate in Environmental Engineering from the Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences (CAS) in 2010, one of China’s most prestigious institutions for environmental research. His doctoral studies laid a strong foundation in environmental chemistry, catalysis, and pollution control technologies. During this period, he engaged in rigorous scientific training and made early contributions to air pollution remediation. His academic journey reflects a strong commitment to interdisciplinary research, blending material science, chemistry, and environmental engineering. To further enhance his global academic perspective, Dr. He later joined Cardiff University in the United Kingdom in 2016 as a visiting scholar under the mentorship of Professor Graham John Hutchings. This international exposure enriched his research outlook and facilitated cross-cultural academic collaboration. Dr. He’s educational trajectory showcases a blend of academic excellence, technical depth, and global research engagement. It has enabled him to address complex environmental issues with advanced, innovative methodologies. His early focus on functional nanomaterials and catalytic degradation of pollutants continues to influence his present research themes. This solid educational background has been instrumental in shaping Dr. He into a leading researcher, educator, and thought leader in the field of environmental science and engineering.

Professional Experience

Dr. Chi He holds several prominent roles in academia and environmental science in China. He is currently a Full Professor at the State Key Laboratory of Multiphase Flow in Power Engineering, a highly prestigious research institution at Xi’an Jiaotong University. He also serves as the Dean of the Department of Environmental Science and Engineering and Director of the Center of Environmental Materials and Pollution Prevention Technology at the same university. These roles underscore his leadership and expertise in advancing interdisciplinary research and education in environmental engineering. Additionally, since 2018, Dr. He has served as an adjunct professor at the National Engineering Laboratory for VOCs Pollution Control Material & Technology, affiliated with the University of Chinese Academy of Sciences. His academic influence is further strengthened by his international experience as a visiting scholar at Cardiff University, where he collaborated on advanced environmental catalysis under the mentorship of Professor Graham John Hutchings. Through these positions, Dr. He has managed over 40 major research projects funded by the NSFC, MOST of China, and industrial partners. His career is a remarkable example of integrating academic excellence, scientific research, and administrative leadership, solidifying his reputation as a pioneering figure in environmental pollution control technologies.

Research Interests

Dr. Chi He’s research interests lie at the intersection of environmental chemistry, materials science, and pollution remediation. His work primarily focuses on the design and application of functional nanomaterials for the mitigation of air pollutants, particularly volatile organic compounds (VOCs), formaldehyde, and other hazardous substances. Environmental catalysis is a cornerstone of his research, where he develops novel catalytic systems to enhance degradation efficiency, water resistance, and selectivity. His group also works on optimizing the interfacial environments of multi-phase catalysts for CO₂ hydrogenation, methanol oxidation, and deep destruction of industrial pollutants. Dr. He’s research extends to single-atom catalysis, hierarchical porous composites, and bifunctional catalytic systems, contributing to fundamental understanding and real-world applications. He is particularly interested in achieving breakthroughs in the selectivity and durability of catalysts under varying environmental conditions. His studies are highly practical and are supported by collaborations with industries and government projects. By bridging laboratory research with environmental policy and engineering applications, Dr. He aims to create sustainable, scalable technologies for air pollution control. His interdisciplinary approach and commitment to applied research position him as a leader in combating environmental challenges through scientific innovation.

Research Skills

Dr. Chi He possesses a wide range of research skills, particularly in environmental catalysis, materials science, and chemical engineering. He has extensive expertise in the synthesis and structural tuning of functional nanomaterials, enabling the development of catalysts with enhanced activity, selectivity, and stability. Dr. He is proficient in advanced material characterization techniques such as X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and surface area analysis, which are crucial for understanding the properties of catalytic systems. His work in catalytic oxidation, hydrodealkylation, and hydrogenation reactions involves both experimental design and kinetic modeling. He has demonstrated significant competence in managing large-scale research projects, applying both laboratory and pilot-scale methodologies. Additionally, Dr. He has contributed to the writing and editing of academic texts, scientific reviews, and technology transfer proposals. His practical experience extends to the invention and application of pollution control technologies, with 48 patent applications and 21 authorized patents. These reflect his capacity to bridge fundamental research with industrial innovation. Dr. He’s collaborative abilities, international research experience, and multidisciplinary problem-solving approaches make him exceptionally skilled in leading high-impact environmental research.

Awards and Honors

Dr. Chi He has received numerous prestigious awards and honors in recognition of his outstanding research contributions and academic leadership. Among his most notable accolades is the Excellent Young Scholar Award from the National Natural Science Foundation of China (NSFC), which acknowledges promising early-career scientists. He was also named a K.C. Wong Young Scholar in 2019, further underscoring his national recognition as an emerging leader in environmental science. Dr. He’s work has been recognized by multiple professional societies and governmental bodies. He received the First Prize in Environmental Protection Science and Technology from the Ministry of Ecology and Environment of China, as well as the Special Prize in Science and Technology awarded by the China Environmental Protection Federation. His commitment to innovation and excellence was further recognized by the Young Scientist Award from the Chinese Society of Environmental Sciences, and the First Youth Innovation Award by the Volatile Organic Matter Control Special Committee. At the regional level, he earned the Shaanxi Provincial Environmental Protection Youth Science and Technology Award and the Second Prize in Science and Technology of Shaanxi Province. These accolades collectively reflect Dr. He’s sustained contributions to environmental research, technological innovation, and science-based policy development.

Conclusion

Dr. Chi He is a visionary environmental researcher whose work continues to make a transformative impact on the field of air pollution control and nanomaterials-based catalysis. His extensive publication record, influential patents, and leadership roles place him at the forefront of environmental engineering both in China and globally. His research not only advances scientific understanding but also yields practical solutions for real-world environmental challenges. By fostering cross-disciplinary collaborations and aligning academic work with industry and government needs, Dr. He exemplifies the qualities of a modern scientific leader. His international experience and role as an educator and administrator further enhance his profile as a holistic academic professional. Although there is always room for deeper engagement in global collaborations and greater visibility in international scientific forums, Dr. He has already established an outstanding foundation. His trajectory points to continued innovation and impact. Considering his significant scholarly contributions, leadership in environmental research, and dedication to sustainability, Dr. Chi He is highly deserving of the Best Researcher Award. His career is a benchmark for excellence in environmental science, and he stands as a role model for aspiring researchers in the field.

Publications Top Notes

  1. Title: A new scheme for boosting in situ Fenton-like reaction in plant pathogenic tissues for selective structural degradation of capsid proteins
    Authors: J. Ma, Jun; M. Chen, Ming; Y. Wang, Yujie; C. He, Chi; J.P. Chen, Jiaping Paul
    Year: 2025

  2. Title: An unexpected increase in PM2.5 levels in Xi’an during the COVID-19 pandemic restrictions: The interplay of anthropogenic and natural factors
    Authors: S. Yang, Shuqi; X. Yang, Xu; Y. Wang, Yujing; C. He, Chi; F. Liu, Fobang
    Year: 2025
    Citations: 1

  3. Title: High-efficiency toluene degradation over Co@N-doped hollow carbon by plasma catalysis: O3-induced bifunctional sites and synergy
    Authors: C. Chen, Changwei; X. Liu, Xiaohe; M. Ma, Mudi; H. Zhang, Hongna; C. He, Chi
    Year: 2025
    Citations: 1

  4. Title: Deactivation effect of different Pb salts over Fe/Zr-W catalyst for selective catalytic reduction of NO with NH3
    Authors: L. Wang, Liang; S. Ren, Shan; X. Li, Xiaodi; S. Chai, Shouning; C.C. Xu, Chunbao Charles
    Year: 2025

  5. Title: Engineering Cr−O−Ti structure towards boosted vinyl chloride destruction: Oxygen species evolution and reaction mechanism
    Authors: H. Xu, Han; Q. Yang, Qin; M. Tian, Mingjiao; R. Albilali, Reem; C. He, Chi
    Year: 2025

  6. Title: Taming the acidity and redox property of phosphorylated Ca doped LaMnO3 for catalytic n-butylamine elimination: Breaking the see-saw effect of activity and N2 selectivity
    Authors: M. Ma, Mudi; Y. Chen, Yutao; Q. Liu, Qiyuan; C. Chen, Changwei; C. He, Chi
    Year: 2025
    Citations: 1

  7. Title: Impacts of Pandemic-Associated Plastic Waste on Microplastics in Ambient PM2.5
    Authors: F. Liu, Fobang; M. Guo, Mengting; Y. Wang, Yanan; C. He, Chi; P. Wu, Pengfei
    Year: 2025

  8. Title: Rationally Fabricated Ce-Mn@ZrO2-SO42- Catalyst Boosts the Efficient Destruction of Chlorobenzene with SO2 Impurity: Synergy of Surface SO42- and Acidic Sites
    Authors: Y. Sun, Yukun; S. Xu, Shuai; B. Bai, Bo; Z. Hao, Zhengping; C. He, Chi
    Year: 2025

  9. Title: Sulfur-resistant mechanism of MnOx@CeO2@MgO core-shell catalyst in simultaneous removal of NOx and chlorobenzene
    Authors: H. Pan, Hua; Z. Chen, Zhenghui; X. Feng, Xiangbo; J. Chen, Jun; C. He, Chi
    Year: 2025
    Citations: 2

  10. Title: Hydrodechlorination under O2 promotes catalytic oxidation of CVOCs over a Pt/TiO2 catalyst at low temperature
    Authors: Y. Zhao, Yonghua; Y. Yu, Yanke; J. Li, Jiahang; J. Xie, Jinmin; C. He, Chi
    Year: 2025

 

 

Prof. Dr. Araceli Tomasini | Environmental Science

Prof. Dr. Araceli Tomasini | Environmental Science | Best Researcher Award

Professor/Investigator at Iztapalapa Metropolitan Autonomous University, Mexico

Dr. Araceli Tomasini Campocossio is a distinguished researcher and professor at the Universidad Autónoma Metropolitana-Iztapalapa (UAM-I), Mexico, with extensive experience in the field of microbiology and biotechnology. With a career spanning over three decades, she has made significant contributions to areas like solid-state fermentation, microbial biodegradation, and environmental remediation. Her dedication to academia includes teaching at both undergraduate and graduate levels, leading research projects, and mentoring aspiring scientists. She has been instrumental in administrative roles, contributing to the development of biotechnology curricula and postgraduate programs. Dr. Tomasini’s international exposure through postdoctoral work and collaborative projects reflects her commitment to addressing global challenges in bioconversion and environmental sustainability.

Professional Profile

Education

Dr. Araceli Tomasini Campocósio earned her Ph.D. in Biotechnology and Enzyme Engineering from the Université de Technologie de Compiègne, France. Her doctoral research focused on proteolysis, lipolysis, and enzyme-based aroma production, showcasing her deep understanding of enzyme systems and their biotechnological applications. Prior to her Ph.D., she completed her Master’s degree at the same institution, refining her expertise in fermentation processes and enzyme engineering. Dr. Tomasini’s strong educational foundation began with her undergraduate studies in Biochemical Engineering at Universidad Autónoma Metropolitana-Iztapalapa (UAM-I), Mexico, where she developed a passion for microbiology and biotechnology. Throughout her academic journey, she consistently excelled in multidisciplinary environments, gaining specialized knowledge in enzyme technology and bioprocesses. Her education laid the groundwork for a career dedicated to bridging the gap between basic and applied research, particularly in environmental remediation and biochemical innovations. Dr. Tomasini’s continuous pursuit of academic excellence is further highlighted by her participation in advanced training programs and certifications, which have enhanced her technical expertise and ability to lead complex research projects.

Professional Experience

With over 35 years of academic and research experience, Dr. Araceli Tomasini Campocósio has been a cornerstone of Universidad Autónoma Metropolitana-Iztapalapa (UAM-I). She has served as a Professor in Biochemical Engineering, teaching undergraduate and postgraduate courses in microbiology, environmental remediation, and biochemical processes. Her teaching portfolio includes designing and delivering critical courses such as Bioquímica Microbiana and Ingeniería Bioquímica, reflecting her dedication to shaping future scientists. In addition to her teaching, Dr. Tomasini has held significant administrative roles, including Head of the Microbiology Department and membership in committees for academic program development. She has been actively involved in designing curricula for advanced degree programs like the Doctorate in Biotechnology and revising study plans to ensure alignment with modern scientific advancements. Beyond academia, Dr. Tomasini has been principal investigator and key collaborator on 13 high-impact national and international projects funded by CONACYT, UNDP, and IFS. Her extensive experience includes leadership in research initiatives focused on biodegradation, solid-state fermentation, and microbiological processes, demonstrating her capacity for interdisciplinary collaboration and scientific innovation.

Research Interests

Dr. Araceli Tomasini Campocósio’s research interests span a broad spectrum of topics within microbiology and biotechnology. She specializes in environmental remediation through microbial processes, solid-state fermentation, and enzyme technology. Her work addresses the biodegradation of pollutants, focusing on sustainable approaches to combat environmental challenges. Dr. Tomasini has a particular interest in the valorization of agricultural and industrial waste using microbiological and biochemical methods, promoting the circular economy and waste-to-resource strategies. Additionally, her expertise includes the production of bioactive compounds and aroma precursors through enzyme-based technologies, contributing to advancements in food and pharmaceutical industries. Her interdisciplinary research bridges microbiology, biochemistry, and environmental sciences, fostering innovative solutions for global challenges such as pollution and resource scarcity. Dr. Tomasini’s dedication to applied research is evident in her leadership of international projects and collaborations that aim to develop cost-effective and environmentally friendly bioprocesses. Her interests also include mentoring the next generation of researchers, ensuring her work inspires continued innovation and sustainability in biotechnology.

Research Skills

Dr. Araceli Tomasini Campocósio possesses a diverse and highly specialized skill set that aligns with her extensive experience in biotechnology and microbiology. Her technical expertise includes enzyme engineering, fermentation processes, biodegradation techniques, and environmental microbiology. She is adept at designing and implementing solid-state fermentation systems, optimizing microbial processes for pollutant degradation, and developing biocatalytic processes for aroma production. Dr. Tomasini has advanced skills in experimental design, data analysis, and the application of biotechnological tools to address environmental and industrial challenges. Her ability to lead multidisciplinary research projects reflects her strong organizational and problem-solving capabilities. In addition, she is skilled in chromatographic and spectroscopic techniques, crucial for analyzing biochemical and microbial processes. Dr. Tomasini is highly proficient in mentoring students and researchers, equipping them with the technical knowledge and skills needed for independent research. Her ability to manage international collaborations further highlights her leadership and teamwork skills, making her an influential figure in scientific research and academic development.

Awards and Honors

Dr. Araceli Tomasini Campocósio’s distinguished career has earned her several awards and honors in recognition of her contributions to biotechnology and environmental sciences. She has received prestigious grants and funding from organizations such as CONACYT, the International Foundation for Science (IFS), and the United Nations Development Program (UNDP), showcasing her excellence in securing competitive research support. Her leadership in groundbreaking projects has been acknowledged at both national and international levels, cementing her reputation as a leading researcher in environmental microbiology and bioprocess engineering. Dr. Tomasini’s commitment to academic excellence and teaching has also earned her accolades for her role in mentoring students and developing innovative curricula. Her longstanding contributions to Universidad Autónoma Metropolitana-Iztapalapa have been recognized through institutional awards and leadership roles, highlighting her dedication to advancing education and research. Additionally, her participation in global research initiatives has positioned her as a prominent figure in interdisciplinary collaboration, earning her respect and recognition in the international scientific community.

Conclusion

Dr. Araceli Tomasini Campocósio is a highly qualified researcher with over three decades of experience in biotechnology, microbiology, and environmental remediation. Her leadership in national and international projects, combined with significant contributions to academic program development, make her a strong candidate for the Best Researcher Award. To further strengthen her candidacy, showcasing her recent publications, research impact metrics, and industry collaborations will solidify her position as a leading researcher with global influence.

Publication Top  Notes

  • Environmental and Nutritional Factors in the Production of Astaxanthin from Haematococcus pluvialis
    • Authors: MJATC Domínguez-Bocanegra, A.R., I. Guerrero-Legarreta
    • Journal: Bioresource Technology
    • Year: 2004
    • Citations: 253
  • Penicillin production by solid state fermentation
    • Authors: J Barrios-Gonzalez, A Tomasini, G Viniegra-Gonzalez, L Lopez
    • Journal: Biotechnology Letters
    • Year: 1988
    • Citations: 132
  • Microbial secondary metabolites production and strain improvement
    • Authors: J Barrios-Gonzalez, FJ Fernandez, A Tomasini
    • Journal: Indian Journal of Biotechnology
    • Year: 2003
    • Citations: 90
  • Gibberellic acid production using different solid-state fermentation systems
    • Authors: A Tomasini, C Fajardo, J Barrios-González
    • Journal: World Journal of Microbiology and Biotechnology
    • Year: 1997
    • Citations: 89
  • High lovastatin production by Aspergillus terreus in solid-state fermentation on polyurethane foam: an artificial inert support
    • Authors: JG Baños, A Tomasini, G Szakács, J Barrios-González
    • Journal: Journal of Bioscience and Bioengineering
    • Year: 2009
    • Citations: 84
  • Mechanisms of interaction of chromium with Aspergillus niger var tubingensis strain Ed8
    • Authors: A Coreño-Alonso, A Solé, E Diestra, I Esteve, JF Gutiérrez-Corona, …
    • Journal: Bioresource Technology
    • Year: 2014
    • Citations: 64
  • Secondary metabolites production by solid-state fermentation
    • Authors: J Barrios-Gonzalez, FJ Fernandez, A Tomasini, A Mejia
    • Journal: Not specified
    • Year: 2005
    • Citations: 61
  • A fungal phenoloxidase (tyrosinase) involved in pentachlorophenol degradation
    • Authors: AM Montiel, FJ Fernández, J Marcial, J Soriano, J Barrios-González, …
    • Journal: Biotechnology Letters
    • Year: 2004
    • Citations: 60
  • Cr (VI) reduction by an Aspergillus tubingensis strain: role of carboxylic acids and implications for natural attenuation and biotreatment of Cr (VI) contamination
    • Authors: A Coreño-Alonso, FJ Acevedo-Aguilar, GE Reyna-López, A Tomasini, …
    • Journal: Chemosphere
    • Year: 2009
    • Citations: 52
  • Effect of culture conditions on production of butter flavor compounds by Pediococcus pentosaceus and Lactobacillus acidophilus in semisolid maize-based cultures
    • Authors: ML Escamilla-Hurtado, SE Valdes-Martinez, J Soriano-Santos, …
    • Journal: International Journal of Food Microbiology
    • Year: 2005
    • Citations: 51

 

 

KOBRA SHIRANI | Environmental Science | Best Researcher Award

Assist. Prof. Dr. KOBRA SHIRANI | Environmental Science | Best Researcher Award

Assistant Professor at TARBIAT MODARES, Iran

Kobra Shirani is an accomplished toxicologist and academic, currently serving as an Assistant Professor at the Faculty of Medical Sciences, Tarbiat Modares University, Iran. With a strong foundation in cellular and molecular biology, she has built her career on advancing the understanding of toxicology, particularly immunotoxicity and its molecular mechanisms. Her research is internationally recognized, as evidenced by her six-month visiting scientist position at Ludwig-Maximilians-Universität München, where she focused on cutting-edge research involving miRNAs. Her professional journey is marked by her exceptional academic achievements, numerous accolades, and significant contributions to teaching and mentoring. Beyond academia, she actively engages in scientific communities, exemplifying her dedication to advancing toxicological research.

Professional Profile

Education

Kobra Shirani holds a PhD in Toxicology from Mashhad University of Medical Sciences, where she investigated immunotoxicity induced by aflatoxin M1 and its relationship with microRNA 155 expression. Her MSc in Toxicology from the University of Medical Sciences, Isfahan, focused on the cytotoxic effects of natural extracts on tumor cells. She also earned a BSc in Cellular and Molecular Biology from Alzahra University, Tehran. Notably, she undertook a six-month sabbatical as a visiting scientist at Ludwig-Maximilians-Universität München, contributing to advanced research on miRNAs. Her diverse academic background underpins her expertise in toxicology and molecular biology.

Professional Experience

Since 2019, Kobra Shirani has served as an Assistant Professor at Tarbiat Modares University, teaching various toxicology-related courses and mentoring students. She previously undertook a six-month industrial sabbatical at the Water Research Institute, gaining valuable practical experience. Her professional career also includes maternity leave, reflecting her ability to balance family and career. She has contributed significantly to teaching and curriculum development in toxicology, including environmental, forensic, and analytical toxicology. Additionally, she is an active member of international scientific committees, such as the Euro-Mediterranean Conference for Environmental Integration, highlighting her global engagement in toxicological research.

Research Interests

Kobra Shirani’s research interests center on toxicology and its intersections with molecular biology and environmental health. She focuses on immunotoxicity, environmental pollutants, natural toxins, and analytical toxicology. Her work on the molecular mechanisms of aflatoxin-induced toxicity and miRNA regulation underscores her commitment to addressing pressing health challenges. Additionally, she is interested in environmental toxicology, particularly the impacts of pollutants and toxins on human health and ecosystems. Her multidisciplinary approach combines laboratory experimentation, risk assessment, and statistical analysis, aligning her research with global environmental and health priorities.

Research Skills

Kobra Shirani possesses extensive research skills, including expertise in cell and molecular biology techniques such as cell culture, DNA/RNA isolation, PCR, qPCR, and Western blotting. She is proficient in immunotoxicity assays, animal handling, and the operation of advanced laboratory instruments, including HPLC, GC, and AAS. Her technical capabilities extend to statistical analysis using software like SPSS and GraphPad Prism. She is adept at risk assessment and environmental toxicology research, leveraging her broad skill set to tackle complex toxicological challenges. Her commitment to continuous learning and adaptability in various research environments underscores her scientific expertise.

Awards and Honors

Kobra Shirani has been recognized with numerous awards for her academic excellence and research contributions. She ranked among the top 1% in Iran’s National University Entrance Exam and secured the 5th rank in the MSc entrance exam and 1st rank in the PhD Comprehensive Examination. She received the Sabbatical Award Scholarship from Mashhad University of Medical Sciences for her research abroad and was honored as a Top Talent by Iran’s National Elites Foundation in 2017. Her accolades highlight her dedication to academic and research excellence, further solidifying her reputation as a leader in her field.

Conclusion 🏆

Kobra Shirani has a commendable academic and professional track record, demonstrating excellence in toxicology research, teaching, and skills development. Her technical expertise, awards, and contributions to the scientific community make her a strong contender for the Best Researcher

Publication Top Notes

  1. The protective effects of Allium ampeloprasum Subsp. Iranicum on cyclophosphamide-induced immunosuppression in NMRI Mice: A promising natural immunomodulator
    Authors: Abedi, F., Yousefsani, B.S., Shirani, K.
    Year: 2024
  2. Title: Uncovering the neuroprotective powers of Allium sativum: Exploring its potential to alleviate malathion-associated Parkinson’s-like behavioral symptoms in a rat model
    Authors: Yousefsani, B.S., Ghobadi, A., Shirani, K.
    Year: 2024
  3. Title: Anticancer Activity of Allium jesdianum Extract: A Potential Therapeutic Approach for Melanoma
    Authors: Shirani, M., Aghazadeh, E., Yousefsani, B.S., Shirani, K.
    Year: 2024
  4. Title: Investigating the role of food pollutants in autism spectrum disorder: A comprehensive analysis of heavy metals, pesticides, and mycotoxins
    Authors: Nehzomi, Z.S., Shirani, K.
    Year: 2024 (In Press)
  5. Title: Epicatechin as a promising agent against arsenic-induced neurobehavioral toxicity in NMRI mice: Behavioral and biochemical alterations
    Authors: Shariati, S., Khodayar, M.J., Azadnasab, R., Shirani, K., Shirani, M.
    Year: 2024 (In Press)
    Citations: 1
  6. Title: Castor Oil: A Natural Remedy with Promising Potential for Parkinson’s Disease Prevention
    Authors: Yousefsani, B.S., Ghobadi, A., Dadmehr, M., Shirani, K.
    Year: 2024
    Citations: 1
  7. Title: Protective effect of a standardized Allium jesdianum extract in an Alzheimer’s disease-induced rat model
    Authors: Kamranfar, F., Jaktaji, R.P., Shirani, K., Faizi, M., Pourahmad, J.
    Year: 2023
    Citations: 3
  8. Title: The Selective Cytotoxicity of Quercus Brantii Lindl. Galls on A375 and SK-MEL-3 Human Malignant Melanoma Cell Lines
    Authors: Yousefsani, B.S., Mohajer, K., Qobadi, A., Shirani, K., Pourahmad, J.
    Year: 2023
    Citations: 1
  9. Title: The hematopoietic potential of methanolic and aqueous extracts of Portulaca oleracea in a phenylhydrazine model of anemia
    Authors: Shirani, K., Riahi-Zanjani, B., Omidkhoda, S.N., Barangi, S., Karimi, G.
    Year: 2023
    Citations: 2
  10. Title: Evaluation of immune responses induced by hydroalcoholic extract of Allium ampeloprasum L. Subsp. Iranicum in mice
    Authors: Shiekhzadeh, F., Vakili, P., Shirani, K.
    Year: 2022
    Citations: 2

 

 

 

Hung-Yi Chuang | Environmental Science | Best Researcher Award

Prof Dr. Hung-Yi Chuang | Environmental Science | Best Researcher Award

Professor at Kaohsiung Medical University, Taiwan.

Dr. Hung-Yi Chuang is a distinguished Professor and Consultant Physician at Kaohsiung Medical University, specializing in occupational and environmental medicine. With over two decades of research experience, his work primarily focuses on the impact of metal exposure, particularly lead, on chronic diseases such as kidney disease, cardiovascular disorders, and cognitive impairment. Dr. Chuang has led significant studies on gene-environment interactions, exploring how genetic factors influence susceptibility to metal toxicity. He has published over 50 papers, with more than 40 in SCI journals as the first or corresponding author. His research contributes to public health by informing preventive measures for workers exposed to hazardous metals. Dr. Chuang’s work also includes interdisciplinary collaborations in precision environmental medicine, incorporating artificial intelligence to identify risk factors for chronic diseases linked to environmental pollutants. His contributions have had a profound impact on both scientific research and public health policies.

Profile
Education

Dr. Hung-Yi Chuang has an extensive educational background in public health and medicine. He earned his Doctor of Science (Sc.D.) in Occupational Health from the prestigious Harvard School of Public Health in 1999. Prior to that, he completed his Master of Public Health (M.P.H.) at National Taiwan University in 1992, which equipped him with a strong foundation in epidemiology and public health practices. His journey in medicine began with a Doctor of Medicine (M.D.) degree from Kaohsiung Medical University in 1990, where he gained in-depth medical knowledge and clinical skills. Dr. Chuang’s educational experiences have shaped his expertise in environmental and occupational medicine, particularly in the areas of toxicology, epidemiology, and chronic disease prevention. His academic pursuits have significantly contributed to his research on the health impacts of environmental metal exposure and genetic interactions, making him a highly regarded expert in his field.

Professional Experience

Dr. Hung-Yi Chuang is a distinguished Professor and Consultant Physician at Kaohsiung Medical University in Taiwan, specializing in Occupational and Environmental Medicine. Since joining the university in July 1999, he has significantly contributed to the field, particularly through his leadership in the Taiwan Lead Worker Cohort study. With over two decades of dedicated research on lead exposure and its impact on health, Dr. Chuang has become a leading expert in examining the associations between metal biomarkers, oxidative stress, and chronic diseases. His work extends to investigating gene-environment interactions, focusing on how genetic factors modify the effects of metal exposure on health outcomes. In addition to his academic role, Dr. Chuang is the founder and director of the Bone Lead Laboratory at Kaohsiung Medical University, where he oversees research projects and guides the next generation of scientists in occupational health and toxicology. His expertise and contributions have made him a key figure in the field.

Research Interest

Dr. Hung-Yi Chuang’s research interests focus on the intricate relationship between environmental metal exposure, particularly lead (Pb), and its effects on chronic diseases. His work delves into the biomarkers of metal toxicity and oxidative stress, examining how they contribute to conditions such as kidney disease, cardiovascular disease, metabolic syndrome, and cognitive decline. Dr. Chuang also investigates gene-environment interactions, aiming to discover novel genes that influence susceptibility to metal toxicity. His studies extend to precision environmental and occupational medicine, where he compares exposed cohorts with non-exposed populations to identify genetic and environmental risk factors. Additionally, Dr. Chuang’s research includes the application of artificial intelligence to assess the association between environmental pollutants, chronic diseases, and genomic data. His findings have profound implications for public health interventions, particularly in high-risk occupations like metalwork, and contribute to advancing the field of environmental and occupational medicine.

Research Skills

Dr. Hung-Yi Chuang possesses extensive research skills in the fields of occupational and environmental medicine, with a specific focus on the impacts of heavy metal exposure, such as lead, cadmium, and arsenic, on chronic diseases. His expertise spans epidemiological studies, biomarker analysis, and gene-environment interactions. Dr. Chuang’s research skills include designing and conducting large-scale cohort studies, utilizing advanced statistical methods, and integrating machine learning and artificial intelligence to assess the health effects of environmental pollutants. He has a strong background in molecular epidemiology and toxicology, applying these skills to study the genetic and epigenetic mechanisms underlying disease susceptibility. Dr. Chuang is also adept at interdisciplinary collaboration, working with experts across various fields to address complex public health challenges. His ability to translate research findings into actionable public health interventions highlights his commitment to improving occupational health and safety standards globally.

Awards and Recognition

Dr. Chuang has been recognized for his contributions to environmental and occupational medicine through various awards and honors. His leadership in establishing the Bone Lead Laboratory at Kaohsiung Medical University and his role as a principal investigator on numerous research projects further highlight his expertise and influence in the field. His extensive publication record and frequent role as a corresponding author also reflect the high regard in which he is held by his peers.

Conclusion

In conclusion, Dr. Hung-Yi Chuang’s extensive research contributions, geographic impact, collaborative efforts, and applied research make him a strong candidate for the Research for Best Researcher Award. His work in environmental health, particularly in understanding the toxic effects of metals and their interaction with genetic factors, has had a profound impact on public health policies and practices. His ongoing commitment to advancing knowledge in this field, coupled with his leadership in cross-disciplinary research, positions him as a leading researcher deserving of this recognition.

Publications Top Notes

  1. The validation of Chinese version of workplace PERMA-profiler and the association between workplace well-being and fatigue
    • Authors: Yang, C., Chen, H.-T., Luo, K.-H., Kuo, C.-H., Kawakami, N.
    • Year: 2024
  2. Mediation analysis for TNF-α as a mediator between multiple metal exposure and kidney function
    • Authors: Luo, K.-H., Tu, H.-P., Chang, H.-C., Yang, C.-H., Chuang, H.-Y.
    • Year: 2024
  3. Association Between Osteoporosis and Adiposity Index Reveals Nonlinearity Among Postmenopausal Women and Linearity Among Men Aged over 50 Years
    • Authors: Chen, P.-J., Lu, Y.-C., Lu, S.-N., Liang, F.-W., Chuang, H.-Y.
    • Year: 2024
  4. Physical frailty identification using machine learning to explore the 5-item FRAIL scale, Cardiovascular Health Study index, and Study of Osteoporotic Fractures index
    • Authors: Yang, C.-C., Chen, P.-H., Yang, C.-H., Chuang, H.-Y., Kuo, C.-H.
    • Year: 2024
  5. Performance of nonalcoholic fatty liver fibrosis score in estimating atherosclerotic cardiovascular disease risk
    • Authors: Huang, Y.-C., Huang, J.-C., Chien, H.-H., Wang, C.-L., Dai, C.-Y.
    • Year: 2023
    • Citations: 2
  6. Do patient characteristics affect EGFR tyrosine kinase inhibitor treatment outcomes? A network meta-analysis of real-world survival outcomes of East Asian patients with advanced non-small cell lung cancer treated with first-line EGFR-TKIs
    • Authors: Chang, H.-C., Wang, C.-C., Tseng, C.-C., Lin, M.-C., Chuang, H.-Y.
    • Year: 2023
  7. Survival outcomes of East Asian patients with advanced non-small cell lung cancer treated with first-line EGFR tyrosine kinase inhibitors: A network meta-analysis of real-world evidence
    • Authors: Chang, H.-C., Huang, K.-T., Tseng, C.-C., Chuang, H.-Y., Wang, C.-C.
    • Year: 2023
    • Citations: 1
  8. Exploring the association of metal mixture in blood to the kidney function and tumor necrosis factor alpha using machine learning methods
    • Authors: Luo, K.-H., Wu, C.-H., Yang, C.-C., Yang, C.-H., Chuang, H.-Y.
    • Year: 2023
    • Citations: 2
  9. Temporal transition trends of cord blood lead levels in various human development index countries and in the Taipei metropolitan area
    • Authors: Hwang, Y.-H., Wu, H.-C., Shyu, M.-K., Wu, T.-H., Chen, Y.-T.
    • Year: 2023
    • Citations: 1
  10. Prediction and potential risk factors for electronic cigarette use behaviors among adolescents: a pilot study in Chiayi, Taiwan
    • Authors: Liu, P.-I., Lin, M.-N., Ho, P.-S., Wu, K.-F., Chuang, H.-Y.
    • Year: 2023
    • Citations: 2