研究内容:

利用遗传谱系示踪技术研究胚胎发育过程中的细胞命运变化,解析心血管系统及其它组织器官的发育过程及其调控机理; 研究心脏受损后的重塑机制,研发促进心肌细胞增殖、减少心脏纤维化和提高冠状血管新生的有效策略,为心梗等心脏相关疾病的治疗提供理论基础。



课题组网站:

一、血管发育与内皮重塑

1. 综述了心脏发育过程中以及病理状态下心内膜细胞的多能性(Zhang et al, Circulation Research 2018)

2.利用精准谱系示踪技术阐明胚胎心内膜向成纤维细胞、血管壁细胞、脂肪细胞的分化途径(Huang et al, J Biol Chem 2019)

3.利用多种谱系示踪工具揭示胚胎血管起源(Feng et al, Circulation Research 2020)

4.发现成体心内膜具有命运可塑性且诱导转分化为冠状血管可以促进心梗损伤后的心脏修复(Jiang et al, Cell Research 2020)


二、心脏再生与修复

1.新生心脏再生过程中细胞衰老的发生机制以及细胞衰老对心脏再生的促进作用(Feng et al, Circulation 2019)

2.发明一种具有药物缓释功能的蛋白质水凝胶,可作为载药心脏补片促进心脏再生修复(Jiang et al, Advanced Materials 2022)

3.发现新生心脏再生过程中存在成纤维细胞向上皮细胞转换现象(Gao et al, Stem Cell Research & Therapy 2023)


三、脂肪细胞起源及功能

1.利用多种谱系示踪工具系统阐明心脏发育及稳态条件下心脏脂肪的起源(Jiang et al, Cell Reports 2021)

2.综述了心脏脂肪的起源及功能(Lu et al, FEBS J 2023)

3.利用谱系示踪技术阐明致心律失常性心肌病模型中心脏脂肪起源及其调控机制(Huang et al, Science China Life Sciences 2023)


  • 2. Huang, Xinyan*; Yan, Lei*; Meng, Jufeng; Liu, Nanbo; Zhu, Shuoji; Jiang, Zhen; Kou, Shan; Feng, Teng; Lin, Chao-Po; Zhou, Bin; Tang, Juan # ; Zhu, Ping # ; Zhang, Hui # . Genetic lineage tracing identifies cardiac mesenchymal-to-adipose transition in an arrhythmogenic cardiomyopathy model. SCIENCE CHINA LIFE SCIENCES . 2023. 66(1):51-66.
  • 7. Jiang, Zhen*; Lu, Zhengkai; Kou, Shan; Feng, Teng; Wei, Yuanxin; Gao, Zibei; Deng, Defang; Meng, Jufeng; Lin, Chao-Po; Zhou, Bin; Zhang, Hui # . Overexpression of Kdr in adult endocardium induces endocardial neovascularization and improves heart function after myocardial infarction. CELL RESEARCH . 2021. 31:485-487.
  • 10. Huang, Xinyan*; Feng, Teng; Jiang, Zhen; Meng, Jufeng; Kou, Shan; Lu, Zhengkai; Chen, Weize; Lin, Chao-Po; Zhou, Bin; Zhang, Hui # . Dual lineage tracing identifies intermediate mesenchymal stage for endocardial contribution to fibroblasts, coronary mural cells, and adipocytes. JOURNAL OF BIOLOGICAL CHEMISTRY . 2019. 294(22):8894-8906.
  • 12. Zhang, Hui # *; Huang, Xiuzhen*; Liu, Kuo*; Tang, Juan*; He, Lingjuan; Pu, Wenjuan; Liu, Qiaozhen; Li, Yan; Tian, Xueying; Wang, Yue; Zhang, Libo; Yu, Ying; Wang, Hongyan; Hu, Ronggui; Wang, Fengchao; Chen, Ting; Wang, Qing-Dong; Qiao, Zengyong; Zhang, Li; Lui, Kathy O.; Zhou, Bin # . Fibroblasts in an endocardial fibroelastosis disease model mainly originate from mesenchymal derivatives of epicardium. CELL RESEARCH . 2017. 27(9):1157-1177.
  • 13. Zhang, Hui*; Pu, Wenjuan; Li, Guang; Huang, Xiuzhen; He, Lingjuan; Tian, Xueying; Liu, Qiaozhen; Zhang, Libo; Wu, Sean M.; Sucov, Henry M.; Zhou, Bin # . Endocardium Minimally Contributes to Coronary Endothelium in the Embryonic Ventricular Free Walls. CIRCULATION RESEARCH . 2016. 118(12):1880-1893.
  • 16. Zhang, Hui*; Von Gise, Alexander; Liu, Qiaozhen; Hu, Tianyuan; Tian, Xueying; He, Lingjuan; Pu, Wenjuan; Huang, Xiuzhen; He, Liang; Cai, Chen-Leng; Camargo, Fernando D.; Pu, William T.; Zhou, Bin # . Yap1 Is Required for Endothelial to Mesenchymal Transition of the Atrioventricular Cushion. JOURNAL OF BIOLOGICAL CHEMISTRY . 2014. 289(27):18681-18692.
  • 17. Tian, Xueying*; Hu, Tianyuan*; Zhang, Hui*; He, Lingjuan*; Huang, Xiuzhen; Liu, Qiaozhen; Yu, Wei; He, Liang; Yang, Zhen; Yan, Yan; Yang, Xiao; Zhong, Tao P.; Pu, William T.; Zhou, Bin # . De novo formation of a distinct coronary vascular population in neonatal heart. SCIENCE . 2014. 345(6192):90-94.
  • 18. Tian, Xueying*; Hu, Tianyuan*; Zhang, Hui*; He, Lingjuan; Huang, Xiuzhen; Liu, Qiaozhen; Yu, Wei; He, Liang; Yang, Zhongzhou; Zhang, Zhen; Zhong, Tao P.; Yang, Xiao; Yang, Zhen; Yan, Yan; Baldini, Antonio; Sun, Yunfu; Lu, Jie; Schwartz, Robert J.; Evans, Sylvia M.; Gittenberger-de Groot, Adriana C.; Red-Horse, Kristy; Zhou, Bin # . Subepicardial endothelial cells invade the embryonic ventricle wall to form coronary arteries. CELL RESEARCH . 2013. 23(9):1075-1090.

    地址:上海市浦东新区华夏中路393号 邮编:201210; 上海市徐汇区岳阳路319号8号楼 邮编:200031(岳阳路校区)

    沪公网安备 31011502006855号

  • Yueyang Campus: 319 Yueyang Road, Shanghai 200031; Zhangjiang Campus: 393 Middle Huaxia Road, Pudong, Shanghai, 201210

    沪公网安备 31011502006855号