牟芳芳 副教授 硕导
牟芳芳,女,1979.01出生,医学博士,副教授,硕士生导师。于上海中医药大学人体解剖学教研室从事教学和科研工作,现担任教研室副主任,主要承担正常人体解剖学、局部解剖学、腧穴解剖学、正常人体学等主干课程的教学。
研究方向为中西医结合防治心脑疾病,主要围绕中药和电针治疗心肌梗死方面进行研究,主持国家自然基金青年项目和上海市自然基金项目各1项,参与其他国家自然基金项目7项,曾荣获上海市第十一届教育科学研究优秀成果三等奖、上海医学科学三等奖、上海市科学技术三等奖、中华医学科技三等奖等多项奖励和荣誉。
在研课题
1.基于p53/Nrf2/Hmox1信号通路介导的铁死亡探讨加味桃红四物汤对心肌缺血再灌注损伤的保护机制(上海市自然基金项目),2023.4-2026.3,主持,在研。
2.外泌体miRNA在针刺干预干细胞治疗心肌梗死中的作用机制研究(国家自然科学基金面上项目),2019.1-2023.12,参加,在研。
主要论文
1. Shou-Song Xuan#, Yue Zhao#, Yan Zheng, Jing Zhu, Han Li, Ping-Ping Lu, Shui-Jin Shao, Hai-Dong Guo*, Fang-Fang Mou*.Electroacupuncture improves cardiac function after myocardial infarction by regulating the mobilization and migration of endogenous stem cells,Acupunct Med. 2023 Jun 19:9645284231169485.
2.Ya-chao Wang#, Wan-ting Meng#, Hai-feng Zhang, Jing Zhu, Qiang-li Wang, Fang-fang Mou*, Hai-dong Guo* .Lymphangiogenesis, a potential treatment target for myocardial injury,Microvascular Research 2023(145):104442
3.Tian-tian Zhao#, Jia-jia Liu#, Jing Zhu#, Han Li , Ya-chao Wang , Yue Zhao , Shui-jin Shao , Hai-dong Guo*, Fang-fang Mou*.SDF-1/CXCR4-Mediated Stem Cell Mobilization Involved in Cardioprotective Effects of Electroacupuncture on Mouse with Myocardial Infarction,Oxidative Medicine and Cellular Longevity,2022.8(IF=7.310)
4.Zhao, Tian-tian#; Mou, Fang-fang#; Li, Han; Shao, Shui-jin*; Guo, Hai-dong*. Effects of Acupuncture in Prevention and Treatment of Diseases by Regulating Chemokines[J]. Acupuncture & Electro-Therapeutics Research, 2021, 46(2): 135-146
5.赵恬田、国海东、宣守松、李涵、邵水金、牟芳芳. 电针对急性心肌梗死小鼠心肌组织炎症反应,趋化因子及心肌细胞凋亡水平的影响[J]. 中国中医药信息杂志, 2021, 28(1):5.
6. Xiao-jing Han#,Han Li,Chong-bin Liu,Zhi-rong Luo,Qiang-li Wang,Fang-fang Mou*, Hai-dong Guo*,Guanxin Danshen Formulation improved the effect of mesenchymal stem cells transplantation for the treatment of myocardial infarction probably via enhancing the engraftment . Life Sciences, 2019. Sep.15 (233) 116740
7.Guo-Hong Cui#,Jing Wu#,Fang-Fang Mou#,Wei-Hua Xie ,Fu-Bo Wang,Qiang-Li Wang,Jie Fang,Yan-Wu Xu ,You-Rong Dong,Jian-Ren Liu,Hai-Dong Guo,Exosomes derived from hypoxia-preconditioned mesenchymal stromal cells ameliorate cognitive decline by rescuing synaptic dysfunction and regulating inflammatory responses in app/ps1 mice. FASEB J, 2018.1.4,32 (2) :654-668