丝素
窦房结
细胞生物学
心脏起搏器
化学
肌节
体外
心肌细胞
丝绸
内科学
生物
医学
材料科学
生物化学
复合材料
心率
血压
作者
Yu‐Feng Hu,An‐Sheng Lee,Shih‐Lin Chang,Shien‐Fong Lin,Ching-Hui Weng,Hsin‐Yu Lo,Pei-Chun Chou,Yung‐Nan Tsai,Yen‐Ling Sung,Chien‐Chang Chen,Ruey‐Bing Yang,Yuh‐Charn Lin,Terry B.J. Kuo,Cheng-Han Wu,Jindian Liu,Tze‐Wen Chung,Shih‐Ann Chen
标识
DOI:10.1038/s41551-021-00812-y
摘要
Pacemaker cells can be differentiated from stem cells or transdifferentiated from quiescent mature cardiac cells via genetic manipulation. Here we show that the exposure of rat quiescent ventricular cardiomyocytes to a silk-fibroin hydrogel activates the direct conversion of the quiescent cardiomyocytes to pacemaker cardiomyocytes by inducing the ectopic expression of the vascular endothelial cell-adhesion glycoprotein cadherin. The silk-fibroin-induced pacemaker cells exhibited functional and morphological features of genuine sinoatrial-node cardiomyocytes in vitro, and pacemaker cells generated via the injection of silk fibroin in the left ventricles of rats functioned as a surrogate in situ sinoatrial node. Biomaterials with suitable surface structure, mechanics and biochemistry could facilitate the scalable production of biological pacemakers for human use.
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