Prof. Guanwei Fan | Cardiovascular research | Best Researcher Award
Prof. Guanwei Fan, First Teaching Hospital of Tianjin University of Traditional Chinese Medicine, China
Publication Profile
Education
Prof. Guanwei Fan obtained his Doctoral degree from Tianjin University of Traditional Chinese Medicine (09/2005-06/2008) after earning his Master’s degree from the same institution (09/2002-07/2005). His academic background provides a solid foundation for his research endeavors in traditional Chinese medicine.
Research Direction
Prof. Fan specializes in the molecular pharmacology of traditional Chinese medicine, specifically in the context of cardiovascular diseases. His focus on this area demonstrates his commitment to bridging traditional practices with modern scientific methodologies, contributing valuable insights to the field of pharmacology.
Academic and Professional Achievements
Prof. Fan has garnered significant recognition for his contributions to research and innovation. He has been selected as a national “WR” scientific and technological innovation leading talent and enjoys special government subsidies from The State Council. He is also a national candidate for the Millions of Talents Project and has been recognized as a young and middle-aged scientific and technological innovation leading talent by the Ministry of Science and Technology. Additionally, he holds the title of the first Young Qihuang Scholar and has received multiple accolades, including Tianjin Outstanding Youth and Jinmen Medical Talents. Notably, he ranked among the top 2% of the world’s top scientists in the “Impact of 2022” and “Impact of 2021” lists.
Conclusion
Prof. Guanwei Fan is a highly suitable candidate for the Research for Best Researcher Award. His innovative approach to integrating traditional Chinese medicine with modern pharmacological research in cardiovascular diseases sets him apart as a leading figure in his field.
Publication Top Notes Β
- Zhang, K., Yin, Z., Chen, F., … Wang, Y., Fan, G. Omics-based pharmacological evaluation reveals Yuanhu Zhitong oral liquid ameliorates arthritis by regulating PKC/ERK/NF-ΞΊB signaling pathway. Journal of Ethnopharmacology, 2024. π
- Liu, Z., Bian, X., Li, L., … Liu, X., Fan, G. SENP1-Mediated HSP90ab1 DeSUMOylation in Cardiomyocytes Prevents Myocardial Fibrosis by Paracrine Signaling. Advanced Science, 2024. π
- Lin, J., Chen, Y., Luo, X., Fan, G. Research hotspots and trends of traditional Chinese and western medicine in treatment of heart failure with preserved ejection fraction. Chinese Traditional and Herbal Drugs, 2024. π
- Feng, C., Jiang, H., Fan, G., Li, L., Feng, J. Retrospective Study on the Efficacy of Qi Li Qiang Xin Jiao Nang in Reducing the Risk of Diuretic Resistance in Patients with Acute Decompensated Chronic Heart Failure. Chinese General Practice, 2024. π
- Shi, J., Yang, M.M., Yang, S., … Fan, G., Ma, C. MaiJiTong granule attenuates atherosclerosis by reducing ferroptosis via activating STAT6-mediated inhibition of DMT1 and SOCS1/p53 pathways in LDLRβ/β mice. Phytomedicine, 2024. π
- Li, Z., Lyu, C., Pan, G., … Zhang, B., Huang, Y., Fan, G. Strategies and methods for studying interaction between traditional Chinese and western medicine dominated by clinical benefit-risk signals. Chinese Traditional and Herbal Drugs, 2024. π
- Zhang, K., Ji, J., Li, N., Yin, Z., Fan, G. Integrated Metabolomics and Gut Microbiome Analysis Reveals the Efficacy of a Phytochemical Constituent in the Management of Ulcerative Colitis. Molecular Nutrition and Food Research, 2024. π
- Zhao, Y., Zheng, G., Yang, S., … Fan, G., Ma, C. The plant extract PNS mitigates atherosclerosis via promoting Nrf2-mediated inhibition of ferroptosis through reducing USP2-mediated Keap1 deubiquitination. British Journal of Pharmacology, 2024. π
- Wu, L.-L., Yang, B.-R., Meng, X.-Y., Fan, G.-W., Yang, B. Editorial: Artificial intelligence: new hope for critically ill cardiovascular patients. Frontiers in Medicine, 2024. π
- Zhang, L., Lin, J., Zhang, C., … Fan, G., He, F. Recent Advances in the Nanotechnology-Based Applications of Essential Oils. Current Nanoscience, 2024. π