Alaa Alsalloum | Immunology and Microbiology | Excellence in Research

 Dr. Alaa Alsalloum | Immunology and Microbiology | Excellence in Research

Dr. Alaa Alsalloum, Novosibirsk State University, Russia.

Dr. Alaa Alsalloum is a dedicated researcher in the fields of immunology and microbiology, known for her contributions to understanding immune responses and microbial interactions. With a strong commitment to excellence in research, she focuses on innovative approaches to tackle infectious diseases and enhance immunological health. Alaa’s work is characterized by a collaborative spirit and a passion for advancing scientific knowledge, making her a valuable asset in the pursuit of breakthroughs in health and disease management.

Profile:

Education

Alaa Alsalloum’s educational journey began at the National Center for Distinguished in Syria, where she completed high school from October 2011 to June 2014. She then earned her Bachelor of Science in Pharmacy from the University of Damascus, focusing on Biomedical Sciences, with a thesis titled “Phage Nanobody Immuno-PCR for Ultra-sensitive Detection of Growth Hormone (GH).” Following this, Alaa participated in a general education program at Kazan (Volga Region) Federal University to master professional educational programs in Russian from October 2018 to June 2019. She continued her studies at Kazan Federal University, where she completed her master’s degree in the Institute of Medicine and Biology, focusing on the earlier immune markers of multiple sclerosis in an animal model for her thesis. Currently, Alaa is pursuing her PhD at Novosibirsk State University, specializing in molecular immunology, with her research centered on the phenotypic and functional characteristics of T-lymphocytes with genetically modified antigen-recognizing receptors specific to solid tumor antigens.

 Interests

Alaa Alsalloum is committed to community service, having volunteered with the Association for Persons with Special Needs (APSN) in Deir Atiyah, Syria, from July 2014 to September 2015. During her time there, she contributed to supporting individuals with special needs, helping to enhance their quality of life and promote inclusivity. This experience reflects her dedication to making a positive impact in the lives of others and highlights her passion for service beyond her academic pursuits.

 Skills

Alaa Alsalloum possesses a robust set of technical skills acquired through her research in immunology and molecular biology during her Bachelor’s and Master’s theses. She is proficient in DNA and RNA extraction, PCR, electrophoresis, bacterial transformation, ELISA tests, immunochemistry, NanoString technology, and cell culture techniques. Additionally, she has experience with PBMC isolation, viral transduction of T-lymphocytes, dendritic cell differentiation protocols, tetramer assays, cell sorting protocols, flow cytometry, and intracellular flow cytometry staining. Alaa also has foundational knowledge in RT-PCR, cell analysis, Seahorse technology, 3D cell culture, and single-cell sequencing.On the interpersonal side, she has developed strong presentation and communication skills through participation in various seminars focused on communication and leadership. Alaa is adept at collaborating within a team while also demonstrating the ability to work independently, making her a well-rounded candidate in both research and professional settings.

 

Publication Top Notes

Alsalloum, A. (2024). NY‐ESO‐1 antigen: A promising frontier in cancer immunotherapy. Clinical and Translational Medicine. DOI: 10.1002/ctm2.70020. ISSN: 2001-1326.

Alsalloum, A. (2023). TCR-Engineered Lymphocytes Targeting NY-ESO-1: In Vitro Assessment of Cytotoxicity against Tumors. Biomedicines, 11(10), Article 2805. DOI: 10.3390/biomedicines11102805.

Alsalloum, A. (2023). Exploring TCR-like CAR-Engineered Lymphocyte Cytotoxicity against MAGE-A4. International Journal of Molecular Sciences, 24(20), Article 15134. DOI: 10.3390/ijms242015134.

Alsalloum, A. (2023). Immunoregulatory properties of erythroid nucleated cells induced from CD34+ progenitors from bone marrow. PLOS ONE, 18(6), Article e0287793. DOI: 10.1371/journal.pone.0287793. ISSN: 1932-6203.

Alsalloum, A. (2023). The Melanoma-Associated Antigen Family A (MAGE-A): A Promising Target for Cancer Immunotherapy? Cancers, 15(6), Article 1779. DOI: 10.3390/cancers15061779.

Alsalloum, A. (2022). Phenotypic and functional features of in vitro generated TCR-T cells specific for the tumor-associated antigen NY-ESO-1. Immunologiya, 43(5), 536-547. DOI: 10.33029/0206-4952-2022-43-5-536-547.

Alsalloum, A. (2022). Study of MAGE-A4 specific TCR-like CAR-T lymphocytes in vitro. Immunologiya, 43(4), 401-411. DOI: 10.33029/0206-4952-2022-43-4-401-411.

Omar Ahmed-Farid | Toxicology and Pharmaceutical Science | Life Sciences Innovation Award

Assoc Prof Dr. Omar Ahmed-Farid | Toxicology and Pharmaceutical Science | Life Sciences Innovation Award

2004, EDA, Egypt

Dr. Omar Abdel-Hamed Ahmed-Farid is a highly qualified candidate for the Research for Best Researcher Award. With a robust academic and professional background, Dr. Farid has significantly impacted the field of physiology and analytical chemistry. His impressive citation metrics—1889 citations, an H-index of 24, and an I10-index of 61—highlight his influential research. As the Unit Administration Manager at the Egyptian Drug Authority, he excels in regulatory compliance, quality assurance, and team leadership. His previous roles include Technical Manager and Drug Quality Control Specialist, where he managed laboratory practices and ensured adherence to international standards. Dr. Farid’s contributions to policy development and staff training further demonstrate his dedication to advancing industry standards and professional excellence. His extensive research experience, combined with his leadership in regulatory and quality assurance roles, makes him a strong contender for this award.

Profile:

Education

Dr. Omar Abdel-Hamed Ahmed-Farid has a distinguished educational trajectory that underscores his expertise in physiology and analytical chemistry. He began his academic journey as an Assistant Researcher in Physiology in 2005, gradually advancing through roles as an Assistant Researcher, Researcher, and ultimately becoming an Associate Professor of Physiology in 2020. His progression reflects a deepening of knowledge and a growing commitment to the field. Dr. Farid’s education has been marked by hands-on experience and rigorous training in high-performance analytical techniques, such as High-Performance Liquid Chromatography (HPLC) and Gas Chromatography (GC). This solid educational foundation has been instrumental in his success in research, quality assurance, and regulatory compliance within the pharmaceutical and medical diagnostics sectors. His academic background is a testament to his dedication to advancing scientific knowledge and improving industry standards

Professional Experience

Dr. Omar Abdel-Hamed Ahmed-Farid’s professional experience showcases a profound impact on the fields of physiology and analytical chemistry. As the Unit Administration Manager of Diagnostic Kits and Medical Supplies at the Egyptian Drug Authority (EDA), he oversees regulatory compliance, quality assurance, and documentation, ensuring adherence to national and international standards. His previous role as Technical Manager involved the implementation and maintenance of ISO-17025 and GLP standards, critical for maintaining laboratory accuracy and reliability. Dr. Farid’s extensive experience also includes managing laboratory equipment procurement and validation, as well as training staff on analytical techniques and quality protocols. His contributions to policy development and regulatory practices highlight his leadership and commitment to advancing industry standards. His career trajectory, from Drug Quality Control Specialist to Associate Professor, reflects a deep and evolving expertise, underpinned by a dedication to both scientific excellence and professional development.

Research Skill

Dr. Omar Abdel-Hamed Ahmed-Farid possesses a robust set of research skills, underscored by his extensive experience and academic background. His proficiency in analytical techniques such as High-Performance Liquid Chromatography (HPLC), Gas Chromatography (GC), and Spectrophotometry highlights his capability to conduct precise and comprehensive biochemical analyses. Dr. Farid has demonstrated expertise in determining neurotransmitters, amino acids, and cellular metabolites, utilizing advanced methods like Atomic Absorption Spectroscopy and ELISA techniques. His research includes investigating enzymatic and non-enzymatic antioxidants, analyzing tissue samples using the Comet Assay, and studying animal blood pressure. His ability to apply complex analytical methods and maintain high standards in research protocols is further evidenced by his contributions to method validation and compliance with international standards. Dr. Farid’s analytical skills, combined with his commitment to quality and innovation, underscore his exceptional research capabilities.

Award and Recognition

Dr. Omar Abdel-Hamed Ahmed-Farid has demonstrated exceptional expertise and dedication in the field of physiology and analytical chemistry, earning widespread recognition for his impactful research and professional contributions. With 1889 citations, an H-index of 24, and a Researchgate score of 46.42, his scholarly work has significantly influenced the scientific community. As the Unit Administration Manager at the Egyptian Drug Authority, Dr. Farid has excelled in ensuring regulatory compliance, maintaining high-quality standards, and leading a team dedicated to advancing diagnostic practices. His commitment to policy development, training, and innovation underscores his role as a pivotal figure in the industry. Dr. Farid’s achievements reflect a remarkable blend of academic excellence and practical impact, making him a distinguished candidate for the Research for Best Researcher Award.

Conclusion

Dr. Omar Abdel-Hamed Ahmed-Farid’s comprehensive research contributions, extensive professional experience, and leadership in regulatory and quality assurance roles make him a highly suitable candidate for the Research for Best Researcher Award. His impact on the field through his research, coupled with his commitment to advancing regulatory practices and training, aligns well with the criteria for this prestigious award.

Publication Top Notes

  • Publication Title: Recombinant Interleukin − 2 Immunotherapy Ameliorates Inflammation and Promotes the Release of Monoamine Neurotransmitters in the Gut-Brain Axis of Schistosoma mansoni-Infected Mice
    • Authors: Mehran, H.S., Nady, S., Kassab, R.B., Ahmed-Farid, O.A., El-Hennamy, R.E.
    • Journal: Journal of Neuroimmune Pharmacology
    • Year: 2024
    • Volume: 19
    • Issue: 1
    • Pages: 37
    • Citations: 0
  • Publication Title: Anti-depressant effect of Naringenin-loaded hybridized nanoparticles in diabetic rats via PPARγ/NLRP3 pathway
    • Authors: El-Marasy, S.A., AbouSamra, M.M., Moustafa, P.E., Galal, A.F., Farouk, H., Ahmed-Farid, O.A.
    • Journal: Scientific Reports
    • Year: 2024
    • Volume: 14
    • Issue: 1
    • Article Number: 13559
    • Citations: 0
  • Publication Title: The study of wound healing activity of Thespesia populnea L. bark, an approach for accelerating healing through nanoparticles and isolation of main active constituents
    • Authors: Abdel Halim, M.B., Eid, H.H., El Deeb, K.S., Ahmed-Farid, O.A., El Messiry, H.M.
    • Journal: BMC Complementary Medicine and Therapies
    • Year: 2024
    • Volume: 24
    • Issue: 1
    • Article Number: 85
    • Citations: 0
  • Publication Title: Eugenol alleviates acrylamide-induced rat testicular toxicity by modulating AMPK/p-AKT/mTOR signaling pathway and blood–testis barrier remodeling
    • Authors: Saleh, D.O., Baraka, S.M., Jaleel, G.A.A., Hassan, A., Ahmed-Farid, O.A.
    • Journal: Scientific Reports
    • Year: 2024
    • Volume: 14
    • Issue: 1
    • Article Number: 1910
    • Citations: 1
  • Publication Title: Gastro-Protective, Antioxidant, and Anti-Inflammatory Potential of Three Vegetable Oils Against Indomethacin-Induced Gastric Ulceration in Rats: in Vivo and in Vitro Study
    • Authors: Mohamed, M.M., Ahmed-Farid, O.A.
    • Journal: Egyptian Journal of Chemistry
    • Year: 2024
    • Volume: 67
    • Issue: 7
    • Pages: 341–359
    • Citations: 0
  • Publication Title: A combined administration of GABA agonist and L-histidine synergistically alleviates obesity-induced neuro-lipotoxicity and distorted metabolic transcriptome
    • Authors: Al-Malki, E.S., Ahmed-Farid, O.A., Moustafa, M.M.A., Linhardt, R.J., Warda, M.
    • Journal: Scientific African
    • Year: 2024
    • Volume: 24
    • Article Number: e02177
    • Citations: 0
  • Publication Title: Tolerability of Artemisia absinthium in anorexia: Targeting of neuronal appetite and satiety in zinc deficiency diet rat model
    • Authors: El-bakry, K.A.-E.K.M., Bahnasawy, M.H., Deef, L.E., Ahmed-Farid, O.A.-H., El-Naeli, S.S.B.
    • Journal: Scientific African
    • Year: 2024
    • Volume: 24
    • Article Number: e02162
    • Citations: 0
  • Publication Title: Zinc Oxide Nanoparticles Attenuated Neurochemical and Histopathological Alterations Associated with Aluminium Chloride Intoxication in Rats
    • Authors: Attia, F.M., Kassab, R.B., Ahmed-Farid, O.A., Abdel Moneim, A.E., El-Yamany, N.A.
    • Journal: Biological Trace Element Research
    • Year: 2024
    • Volume: (in press)
    • Citations: 0
  • Publication Title: Neurological study on the effect of CeNPs and/or La Cl3 on adult male albino rats
    • Authors: Abdel-Rahman, M., Elmasry, H.M., Ahmed-Farid, O.A., Hegazy, S.M., Rezk, M.M.
    • Journal: Journal of Trace Elements in Medicine and Biology
    • Year: 2024
    • Volume: 81
    • Article Number: 127323
    • Citations: 2
  • Publication Title: Nanoliposomal amino acids counteracting protein malnutrition induced hematopoietic and hepatic complications
    • Authors: Ahmed, R.F., Elbaset, M.A., Farouk, H., Ahmed-Farid, O.A.H., Nasr, M.
    • Journal: Journal of Drug Delivery Science and Technology
    • Year: 2023
    • Volume: 89
    • Article Number: 105051
    • Citations: 0

 

Xin Wang | Pharmaceutical Science | Best Researcher Award

Assoc Prof Dr. Xin Wang | Pharmaceutical Science | Best Researcher Award

Assoc. Professor and PhD supervisor of Shanghai Jiao Tong University, China.

Xin Wang is a Tenure-Track Associate Professor at Shanghai Jiao Tong University, specializing in pharmaceutical and biomedical analysis. He earned his Ph.D. in Analytical Chemistry from Peking University and completed postdoctoral work at MIT and UC Berkeley. His research focuses on mass spectrometry, metabolomics, and proteomics, with key projects including drug metabolism analysis, human neurogenesis studies, and advanced sample preparation techniques. Wang’s contributions have garnered several awards, such as the Shanghai Pujiang Talent Plan Award and recognition at MIT. His expertise in analytical techniques and innovative methods has significantly impacted both academic research and industry practices.

Professional Profiles:

Education

Xin Wang completed his B.Sc. in Chemistry at Wuhan University, China, in 2010. He pursued his Ph.D. in Analytical Chemistry at Peking University, graduating in 2015. Following his doctoral studies, Dr. Wang undertook postdoctoral research at the Massachusetts Institute of Technology (MIT) from 2015 to 2018. Since 2020, he has been serving as a Tenure-Track Associate Professor at the School of Pharmaceutical Sciences, Shanghai Jiao Tong University, China.

Professional Experience

Xin Wang’s professional experience includes a significant role as a Tenure-Track Associate Professor at the School of Pharmaceutical Sciences, Shanghai Jiao Tong University, where he has been since 2020. Before this, he was a Senior Postdoctoral Associate at MIT’s Department of Biological Engineering from 2018 to 2019, and a Postdoctoral Associate in the same department from 2015 to 2018. His earlier academic journey includes a Ph.D. in Analytical Chemistry from Peking University, where he also worked as a Visiting Graduate Student at UC Berkeley.

Research Interest

Xin Wang’s research interests are at the forefront of pharmaceutical and biomedical analysis, emphasizing the use of advanced analytical techniques. His work primarily focuses on mass spectrometry and its applications in drug metabolism and toxicity testing, aiming to replace traditional trials with in vitro human systems. He is also deeply engaged in metabolomics and proteomics, using these techniques to unravel metabolic features in human neurogenesis and other physiological processes. Wang has developed innovative methods in solid-phase microextraction to enhance the sensitivity and accuracy of analyzing low-molecular-mass compounds. His research integrates these areas to advance understanding in drug testing, biomarker discovery, and the mechanistic insights into human health and disease. This multidisciplinary approach not only pushes the boundaries of analytical chemistry but also contributes to more effective and efficient drug development and disease treatment strategies.

Award and Honors

Xin Wang has received several prestigious awards and honors throughout his career. In 2023, he was recognized as an Outstanding Individual with Exceptional Contributions in Education by the School of Pharmacy at Shanghai Jiao Tong University. He also won the Second Prize in the Young Professor Teaching Skills Competition at Shanghai Jiao Tong University in 2022. Wang’s accolades include the Shanghai Overseas High-Level Talent Program Award and the Shanghai Pujiang Talent Plan Award, both in 2020. In 2016, he earned First Place in the MIT Center for Environmental Health Sciences Session. Additionally, he was awarded the First Prize in the Science and Technology Award from the China Association for Instrumental Analysis in 2015. Earlier achievements include the Aoqing Tang Scholarship (2015), the Brilliance Scholarship (2014), and multiple awards for his graduate research and innovation.

Research Skills

Xin Wang possesses advanced research skills in several key areas of analytical and biomedical science. His expertise includes pharmaceutical and biomedical analysis, utilizing techniques such as mass spectrometry, metabolomics, and proteomics to study complex biological systems. He is proficient in solid-phase microextraction and has developed innovative methods for capturing and quantifying low-molecular-mass compounds. Wang’s work with time-dependent metabolomics and LC-MS-based quantitation reflects his ability to apply cutting-edge analytical techniques to understand human neurogenesis and drug metabolism. His research in automated sample preparation and ambient mass spectrometry demonstrates his skills in developing novel methodologies for high-sensitivity detection and analysis. Wang’s contributions to bioanalytical strategies and experimental design have been recognized and published in top scientific journals, showcasing his ability to push the boundaries of current research methodologies.

Publications

  1. “Mass spectrometry‐based metabolomics for the investigation of antibiotic–bacterial interactions”
    • Authors: Xin Wang
    • Year: 2024
  2. “A new approach towards highly sensitive detection of endogenous N-acetylaspartic acid, N-acetylglutamic acid, and N-acetylaspartylglutamic acid in brain tissues based on strong anion exchange monolith microextraction coupled with UHPLC-MS/MS”
    • Authors: Xin Wang
    • Year: 2024
  3. “Mass spectrometry-based quantitation combined with time-dependent metabolomics to discover metabolic features in human neurogenesis using neural constructs generated from neural progenitor cells”
    • Authors: Xin Wang
    • Year: 2023
  4. “Mass spectrometry analysis of S-nitrosylation of proteins and its role in cancer, cardiovascular and neurodegenerative diseases”
    • Authors: Xin Wang
    • Year: 2022
  5. “Low Doses of Arsenic in a Mouse Model of Human Exposure and in Neuronal Culture Lead to S-Nitrosylation of Synaptic Proteins and Apoptosis via Nitric Oxide”
    • Authors: Xin Wang
    • Year: 2020
  6. “Analysis of an Integrated Human Multiorgan Microphysiological System for Combined Tolcapone Metabolism and Brain Metabolomics”
    • Authors: Xin Wang
    • Year: 2019
  7. “Automated Online Solid-Phase Derivatization for Sensitive Quantification of Endogenous S-Nitrosoglutathione and Rapid Capture of Other Low-Molecular-Mass S-Nitrosothiols”
    • Authors: Xin Wang
    • Year: 2018
  8. “Shank3 mutation in a mouse model of autism leads to changes in the S-nitroso-proteome and affects key proteins involved in vesicle release and synaptic function”
    • Authors: Xin Wang
    • Year: 2018
  9. “Fast analysis of glycosides based on HKUST-1-coated monolith solid-phase microextraction and direct analysis in real-time mass spectrometry”
    • Authors: Xin Wang
    • Year: 2017
  10. “Polymer‐based monolithic column with incorporated chiral metal–organic framework for enantioseparation of methyl phenyl sulfoxide using nano‐liquid chromatography”
    • Authors: Xin Wang
    • Year: 2016