Prof. Dr. Huiying Li | Best Researcher Award

Prof. Dr. Huiying Li | Best Researcher Award

Beijing Forestry University | China

Huiying Li is a researcher at Beijing Forestry University in Beijing, China, with a publication record of 46 documents, 674 citing documents, 753 total citations, and an h-index of 15. Her work spans food science, natural products, neuroprotection, and bioactive compounds, with contributions to the study of acorn polysaccharides, bamboo leaf flavonoids, and lactoferrin-related bioactivities. Her recent publications include quantitative analyses of acorn polysaccharides, investigations into anti-diabetic and anti-Alzheimer’s mechanisms, and studies on bamboo leaf flavonoids in regulating molecular pathways linked to Alzheimer’s disease progression. She has also contributed to correction work related to polyphenol extraction and bioactivity evaluation. Through her research, Huiying Li focuses on understanding bioactive natural substances, their molecular mechanisms, and their potential therapeutic applications, including anti-diabetes functions and neuroprotective effects under conditions such as circadian rhythm disruption and ulcerative enteritis. Her collaborative work spans more than 100 co-authors, reflecting a strong interdisciplinary research network. With consistent scholarly output and growing citation impact, she continues to contribute to the advancement of natural product research and functional food science.

Profile : Scopus 

Featured Publications

Li, H., et al. (2025). Quantitative analysis, anti-diabetes bioactivities evaluation and mechanism investigation of acorn polysaccharides from three different species. Food Science and Human Wellness.

Li, H., et al. (2025). Bamboo leaf flavonoids from Phyllostachys glauca McClure suppress the progression of Alzheimer’s disease induced by circadian rhythm disruption through regulating Hif3α/Rab7/TNFα/IL1β pathway. International Journal of Molecular Sciences.

Li, H., et al. (2024). Correction to: Extraction condition optimization, quantitative analysis, and anti-AD bioactivity evaluation of acorn polyphenols from Quercus variabilis, Quercus aliena, and Quercus dentata. International Journal of Molecular Sciences.

Li, H., et al. (2024). Evaluation of the protective bioactivity and molecular mechanism verification of lactoferrin in an Alzheimer’s mouse model with ulcerative enteritis. Journal of Dairy Science.

Prof. Dr. Ayper Boga Pekmezekmek | Best Researcher Award

Prof. Dr. Ayper Boga Pekmezekmek | Best Researcher Award

Cukurova University | Turkey

Ayper Boğa Pekmezekmek is a distinguished academic and researcher at Çukurova University Faculty of Medicine, Turkey, specializing in physiology, toxicology, and developmental biology. With 3 published documents, 12 citations, and an h-index of 3, her scholarly work reflects a focused contribution to understanding physiological and biochemical mechanisms under environmental and pharmacological stress. She earned her education and research training in biomedical sciences, where she developed expertise in experimental physiology and toxicological studies involving model organisms. Her research primarily investigates the physiological effects of chemical agents on embryonic development and explores the protective biochemical pathways that mitigate these effects. Notably, her publication in Environmental Science and Pollution Research examined the role of L-glutamic acid monosodium salt in reducing lithium-induced developmental toxicity, marking a valuable contribution to environmental and medical toxicology. Through her teaching and research experience, she continues to promote scientific inquiry into the mechanisms of toxicity and protection in living systems. Her work demonstrates an ongoing commitment to improving environmental health and fostering translational research in physiology and toxicology, serving as an inspiration for advancing biomedical safety and sustainable health research

Profiles : Orcid | Scopus

Featured Publications

Boğa Pekmezekmek, A., Emre, M., Tunç, E., Kalay, B., Kocahan, S., Emre, N., & Emre, T. (2024). Exposure to high-molecular-weight polyvinyl chloride alters bacterial diversity in the gut microbiota of the Wistar rat. Rocznik Ochrona Środowiska, 26. https://doi.org/10.54740/ros.2024.038

Emre, M., Karamazi, Y., Emre, T., Avcı, Ç., Aydın, Ç., Ebrahimi, S., & Boğa Pekmezekmek, A. (2024). The effect of 6 GHz radiofrequency electromagnetic radiation on rat pain perception. Electromagnetic Biology and Medicine. https://doi.org/10.1080/15368378.2024.2331134

Müsüroğlu, S., Şahin, L., Kocahan, S., Annaç, E., Tiraşci, N., & Boğa Pekmezekmek, A. (2023). Effect of caffeine on hippocampal memory and levels of gene expression in social isolation stress. International Journal of Developmental Neuroscience. https://doi.org/10.1002/jdn.10292

Boğa Pekmezekmek, A., Emre, M., Erdoğan, Ş., Yılmaz, M. B., Tunç, E., Sertdemir, Y., & Emre, Y. (2022). Effects of high-molecular-weight polyvinyl chloride on Xenopus laevis adults and embryos: The mRNA expression profiles of Myf5, Esr1, Bmp4, Pax6, and Hsp70 genes during early embryonic development. Environmental Science and Pollution Research, 29, 14767–14779. https://doi.org/10.1007/s11356-021-16527-1

Kocahan, S., Akıllıoğlu, K., Şencar, L., Şahin, L., Çevik, Ö. S., Taşkın Güven, E., Güven, C., Boğa Pekmezekmek, A., & Polat, S. (2021). Living with female rats exposed to restraint stress during pregnancy caused depressive-like behavior in male rats and stress-induced apoptosis. International Journal of Developmental Neuroscience, 81(7), 643–654. https://doi.org/10.1002/jdn.10142