一、基本情况
姓名:王晖,性别:男,最高学位:博士,职称:教授。人才称号:“元光学者”启航岗A、社会兼职:天津市神经科学学会青委会常务委员、北辰区青联委员。最高学历:博士、学位单位:南开大学。留学经历:无。
二、博导所属学科
生物医学工程学科
研究方向一:神经系统疾病致病机制与药物靶标
研究方向二:神经退行性疾病的创新疗法
研究方向三:基于纳米材料的神经调控
三、硕导所属学科
1、生物学学科
研究方向一:神经系统疾病致病机制与药物靶标
研究方向二:神经退行性疾病的创新疗法
研究方向三:基于纳米材料的神经调控
2、生物医学工程学科
研究方向一:神经系统疾病致病机制与药物靶标
研究方向二:神经退行性疾病的创新疗法
研究方向三:基于纳米材料的神经调控
四、主持、参与的科研及教研项目情况(含获奖情况)
纵向项目:
1) 国家自然科学基金青年项目,Hippo信号通路在阿尔茨海默病中的作用及机制研究
2) 中国博士后科学基金特别资助项目,以MST1为靶点及以靶向递送为策略的阿尔茨海默病创新药物的研究
3) 天津市科技局多元投入项目,Hippo/MST1信号通路调控神经炎症在阿尔茨海默病中的作用及机制研究
4) 河北省教育厅基础研究重点培育项目,MST1在阿尔茨海默病中的作用及靶向药物的临床前研究
5) 中国博士后科学基金面上项目,Hippo/MST1信号通路在抑郁症中的作用及机制研究
6) 中国博士后科学基金面上项目,线粒体自噬对阿尔茨海默病认知功能的影响及机制研究
横向项目:
1) 天士力集团技术开发项目,养血清脑丸改善阿尔茨海默症小鼠睡眠状况的药效机理研究
2) 天士力集团技术开发项目,芍麻止痉颗粒治疗抽动障碍的作用及机制研究
3) 北京质肽生物医药科技有限公司技术开发项目, 受试物ZT002注射液在阿尔茨海默病治疗中的药效研究
4) 北京质肽生物医药科技有限公司技术开发项目, 受试物ZT002注射液对糖氧剥夺细胞的影响研究
五、近年来发表代表性论文情况(仅限第一作者或通讯作者),主编或参编的教材、专著情况,获得专利情况等
1) Wang, H., Xu, X., Pan, Y.C., Yan, Y., Hu, X.Y., Chen, R., Ravoo, B.J., Guo, D.S.*, and Zhang, T.* Recognition and Removal of Amyloid-beta by a Heteromultivalent Macrocyclic Coassembly: A Potential Strategy for the Treatment of Alzheimer's Disease. Advanced Materials. 2021
2) Wang, H., Shang, Y., Wang, E., Xu, X., Zhang, Q., Qian, C., Yang, Z., Wu, S.*, and Zhang, T.* MST1 mediates neuronal loss and cognitive deficits: A novel therapeutic target for Alzheimer’s disease. Progress in Neurobiology. 2022
3) Yan, Y., Xu, X., Chen, R., Wu, S., Yang, Z., Wang, H.*, Zhang, T.* Down-regulation of MST1 in hippocampus protects against stress-induced depression-like behaviours and synaptic plasticity impairments. Brain Behavior and Immunity. 2021
4) Liu, Z., Fu, J., Yuan, H., Ma, B., Cao, Z., Chen, Y., Xing, C., Niu, X., Li, N., Wang, H.*, An, H.* Polyisocyanide hydrogels with tunable nonlinear elasticity mediate liver carcinoma cell functional response. Acta Biomaterialia. 2022
5) Guo, S.#, Wang, H.#, Pang, C.L., Ren, X., Li, J.W., Wang, X.Z., Shi, S., Qi, J.L., Zhang, H.L., Zhan, Y., Chen. Y.*, An. H.* Entering the spotlight: Chitosan oligosaccharides as novel activators of CaCCs/TMEM16A. Pharmacological Research. 2019
6) Pan, Y.C.#, Wang, H.#, Xu, X.#, Tian., H.W. Zhao, H., Hu, X.Y., Zhao, Y., Liu, Y., Ding, G., Meng, Q., Ravoo, B.J., Zhang, T.*, Guo, D.S.* Coassembly of Macrocyclic Amphiphiles for Anti-β-Amyloid Therapy of Alzheimer’s Disease. CCS Chemistry. 2020
7) Wang, H., Jiang, T.Y., Li, W., Gao, N., and Zhang, T.* (2018). Resveratrol attenuates oxidative damage through activating mitophagy in an in vitro model of Alzheimer's disease. Toxicology letters. 2018
8) Wang, H., Fu, J., Xu, X., Yang, Z., and Zhang, T.* Rapamycin activates mitophagy and alleviates cognitive and synaptic plasticity deficits in a mouse model of Alzheimer‘s disease. Journals of Gerontology Series A-Biological Sciences and Medical Sciences. 2021
9) Wang, H., Gao, N., Li, Z., Yang, Z., and Zhang, T.* Autophagy Alleviates Melamine-Induced Cell Death in PC12 Cells Via Decreasing ROS Level. Molecular Neurobiology. 2016
10) Fu, J.#, Wang, H.#, Gao, J., Yu, M., Wang, R., Yang, Z., and Zhang, T.* (2017). Rapamycin Effectively Impedes Melamine-Induced Impairments of Cognition and Synaptic Plasticity in Wistar Rats. Molecular Neurobiology. 2017
11) Zhang, Y., Guo, K., Zhang, P., Zhang, M., Li, X., Zhou, S., Sun, H., Wang, W., Wang, H.,* and Hu, Y.* Exploring the mechanism of YangXue QingNao Wan based on network pharmacology in the treatment of Alzheimer’s disease. Frontiers in Genetics. 2022
12) Wang, H., Xu, X.X., Xu, X.X., Gao, J., and Zhang, T.* Enriched Environment and Social Isolation Affect Cognition Ability via Altering Excitatory and Inhibitory Synaptic Density in Mice Hippocampus. Neurochemical Research. 2020
13) Gao, N.#, Wang, H.#, Yin, H.Q., and Yang, Z.* Angiotensin II induces calcium-mediated autophagy in podocytes through enhancing reactive oxygen species levels. Chemico-Biological Interactions. 2017
14) Wang, Y.#, Wang, H.#, Ge, H., and Yang, Z.* AG-1031 induced autophagic cell death and apoptosis in C6 glioma cells associated with Notch-1 signaling pathway. Journal of Cellular Biochemistry. 2018
15) Yin, H.Q.#, Wang, H.#, Zhang, H., Gao, N., Zhang, T., and Yang, Z.* Resveratrol Attenuates A beta-Induced Early Hippocampal Neuron Excitability Impairment via Recovery of Function of Potassium Channels. Neurotoxicity Research. 2017
六、联系人:王晖,联系方式:电话或电子邮箱13920262557,wanghuihebut@163.com