诱导多能干细胞
细胞外基质
去细胞化
基质凝胶
细胞生物学
化学
细胞分化
干细胞
内皮
心脏瓣膜
电池类型
层粘连蛋白
间充质干细胞
组织工程
再生医学
内皮干细胞
细胞外
基质(化学分析)
生物
中胚层
解剖
Ⅰ型胶原
瓣膜性心脏病
心脏发育
心脏瓣膜
染色
作者
Yecen Zhang,Minghui Xie,Hong Cao,Xiang Qiu,Wenyi Wan,Ying Zhou,Jiawei Shi,Nianguo Dong,Weihua Qiao
标识
DOI:10.1002/adhm.202503948
摘要
Valvular endothelial cells (VECs) derived from induced pluripotent stem cells (iPSCs) serve as a promising source for cardiovascular research, yet their application is limited by suboptimal differentiation efficiency and functional immaturity. The extracellular matrix (ECM) influences stem cell differentiation, with the valvular ECM being unique compared to other tissues, and our understanding of its role in VECs differentiation is limited. The proteomic analysis comparing the protein composition of decellularized human heart valve ECM (dhECM) and Matrigel found that type V collagen (Col V) was uniquely present in dhECM and localized beneath the endothelium in the ventricular layer of valves. Subsequent investigations into the role of Col V in the differentiation of iPSC-derived valvular endothelial-like cells (iVECs) demonstrated that Col V significantly enhanced differentiation efficiency from 18.2% to a peak of 69.6%. Moreover, Col V promoted the proliferation, adhesion, migration, tube formation, and low-density lipoprotein (LDL) uptake functions of iVECs in vitro, showing a closer alignment with the functionality of primary VECs. Overall, this study indicates that Col V directs the differentiation of iPSCs into valvular endothelial-like cells with improved differentiation efficiency and functionality, which is instrumental for the development and application of tissue-engineered heart valves, drug screening, and the future of regenerative medicine.
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