Engineering human ventricular heart muscles based on a highly efficient system for purification of human pluripotent stem cell-derived ventricular cardiomyocytes
Bin Li(China Railway Group (China)), Ning Sun(Jiangnan University), Ruizhe Qian(Fudan University), Jianyi Zhang(Institute of Disaster Prevention), Pengyuan Yang(Second Military Medical University), Yongkun Zhan(Fudan University), Chao Lü(Fudan University), SF Chen(Wuhan University), Wei Sheng(Children's Hospital of Fudan University), Huanhuan Cai(Wuhan University), Qianqian Liang(Shihezi University), Xiaochen Wang(First Affiliated Hospital Zhejiang University), Ping Zhou(Fudan University), Guoying Huang(Children's Hospital of Fudan University), Hui Yang(Fudan University), Weinian Shou(Indiana University – Purdue University Indianapolis), Ping Liang(Nanjing University of Chinese Medicine), Haoyang Xin(Michigan State University)
Cited by 60
Related Papers
Large Cardiac Muscle Patches Engineered From Human Induced-Pluripotent Stem Cell–Derived Cardiac Cells Improve Recovery From Myocardial Infarction in Swine
|Circulation|2017|469
Cardiac Repair in a Porcine Model of Acute Myocardial Infarction with Human Induced Pluripotent Stem Cell-Derived Cardiovascular Cells
|Cell stem cell|2014|450
In Situ Expansion, Differentiation, and Electromechanical Coupling of Human Cardiac Muscle in a 3D Bioprinted, Chambered Organoid
|Circulation Research|2020|322
TOX promotes the exhaustion of antitumor CD8+ T cells by preventing PD1 degradation in hepatocellular carcinoma
|Journal of Hepatology|2019|289