Showkat Ahmad Bhat | Translational Research | Editorial Board Member

Dr. Showkat Ahmad Bhat | Translational Research | Editorial Board Member

Associate Professor | Deptt. of Biochemistry, Govt. Medical College Handwara | India

Dr. Showkat Ahmad Bhat is an accomplished biochemist and academic leader whose work spans clinical biochemistry, cancer biology, molecular biology, proteomics, and communicable diseases, reflecting a career dedicated to advancing both fundamental understanding and applied biomedical research. As an Associate Professor in the Department of Biochemistry at Government Medical College Handwara, he has developed a strong interdisciplinary portfolio with widely cited contributions across diverse domains, including the pharmacological potential of natural compounds, heavy metal toxicity, inflammatory mediators in metabolic disorders, animal and poultry health, and infectious disease pathogenesis. His research on bioactive phytochemicals such as zingerone, naringenin, and D-limonene has provided valuable insights into antioxidant, anti-inflammatory, and organ-protective mechanisms, while his work on microbial threats such as Salmonella, gastrointestinal parasites, and foot-and-mouth disease has informed both veterinary and public health perspectives. Dr. Bhat has collaborated extensively with national and international researchers, contributing to reviews, experimental studies, and translational investigations published in reputable journals spanning medical, veterinary, and biochemical sciences. His scholarship also extends to emerging fields such as epigenetic markers and microRNAs in breast cancer, reflecting his commitment to integrating molecular diagnostics with clinical needs. Beyond research, he has helped shape scientific understanding in the Kashmir region by addressing local health challenges, supporting capacity-building, and promoting evidence-based approaches in clinical biochemistry and infectious disease management. His cumulative body of work underscores a sustained commitment to improving human and animal health through rigorous inquiry, multidisciplinary collaboration, and the pursuit of innovative, socially relevant solutions. He has 546 citations from 28 documents with an h-index of 10.

Profiles: Google Scholar | Scopus | ORCID

Featured Publications

1. Bilal Ahmad, S. B., Rehman, M. U., Amin, I., Arif, A., Rasool, S., … (2015). A review on pharmacological properties of zingerone (4-(4-hydroxy-3-methoxyphenyl)-2-butanone). The Scientific World Journal.

2. Bhat, S. A., Hassan, T., & Majid, S. (2019). Heavy metal toxicity and their harmful effects on living organisms: A review. International Journal of Medical Science and Diagnosis Research.

3. Dar, R. A. S. N. A. G. M. A., Ahmad, S. M., Bhat, S. A., Ahmed, R., Urwat, U., Mumtaz, P. T., … (2017). Salmonella typhimurium in poultry: A review. World’s Poultry Science Journal.

4. Bashir, A. H., Bhat, S. A., Majid, S., & Hamid, R. (2020). Role of inflammatory mediators (TNF-α, IL-6, CRP), biochemical and hematological parameters in type 2 diabetes mellitus patients of Kashmir, India. Medical Journal of the Islamic Republic of Iran.

5. Reshi, M. R. M. A., Husain, I., Bhat, S. A., Rehman, M. U., & Razak, R. (2015). Bovine mastitis as an evolving disease and its impact on the dairy industry. International Journal of Current Research and Review.

Maryam Tehranipour | Pharmacology | Best Researcher Award

Assoc. Prof. Dr. Maryam Tehranipour | Pharmacology | Best Researcher Award

Animal Physiology | Islamic Azad University | Iran

Dr. Maryam Tehranipour is an accomplished Associate Professor in the Department of Biology at the Islamic Azad University, Mashhad, Iran, recognized for her distinguished contributions to the fields of diabetes, metabolic disorders, neurobiology, oxidative stress, and cancer biology. Holding a Ph.D. in Animal Physiology, she has built a dynamic academic and research career integrating cellular physiology, pharmacology, and molecular mechanisms of disease. Her extensive publication record spans a broad spectrum of biomedical investigations, including neuroprotective strategies, natural product pharmacology, nanomedicine, and experimental models of diabetes and neurodegeneration. Dr. Tehranipour’s pioneering studies have elucidated the roles of oxidative damage, angiogenesis, and neuronal regeneration in disease progression and therapeutic recovery, particularly highlighting the potential of bioactive compounds and nanocarrier systems in drug design and targeted therapy. Her collaborative work has advanced understanding of diabetic complications, nerve injury repair, and cancer cell modulation through natural and synthetic agents. Beyond her prolific research output, she has played a significant role in mentoring undergraduate, graduate, and doctoral students, fostering scientific rigor and innovation in physiological research. Her scholarly influence is reflected through her indexed publications, contributions to interdisciplinary research networks, and global collaborations that link physiology, biochemistry, and nanotechnology for translational health impact. Dr. Tehranipour’s scientific endeavors emphasize the integration of experimental biology with clinical relevance, aiming to bridge laboratory discoveries with therapeutic applications. Through her ongoing research, she continues to contribute meaningfully to global biomedical science, particularly in developing sustainable and biologically safe therapeutic interventions addressing chronic and degenerative diseases that pose major public health challenges. She has 238 citations from 53 documents with an h-index of 9.

Profile: Scopus 

Featured Publications

1. The Umbelliprenin-CTAB cellulose nanocrystal delivery system prevents hyperglycemia in diabetic rats by activating the insulin receptor IR/PDK1 pathway. (2025). Scientific Reports. Open access.

2. The effects of N-butanol and ethyl acetate fractions of Ferula asafoetida hydroalcoholic extract on the expression of VEGF and FGF genes in the chorioallantoic membrane of chick embryos. (2025). Journal of Veterinary Research.Open access.

3. Bimetallic-based colorimetric aptasensor for the quantitative analysis of ampicillin using catalytic activity of ZrFe metal–organic framework and terminal deoxynucleotidyl transferase-assisted signal amplification. (2025). Bionanoscience. Open access.

4. The effect of Ziziphora clinopodioides hydroalcoholic extract on the neuronal density and histopathology of the hippocampal area CA2 in streptozotocin-induced Alzheimer’s model in male rats. (2025). Journal of Chemical Health Risks. Open access.

5. A novel alpha-terpineol-loaded niosome formulation coated with hyaluronic acid and evaluation of its anticancer properties in vitro. (2025). Journal of Molecular Liquids. Open access.