生物
疾病
心脏瓣膜
人体病理学
心脏病学
内科学
病理
心脏瓣膜
人类疾病
心脏病
纤维化
动物模型
人的心脏
阀门更换
梅德林
生物信息学
解剖
作者
Yuanhang He,Abbas Jalili,Carter B. Jones,Haoting He,Lameck Beni,Daniel N. Lamont,Junqi Hu,Macy Yost,Lance A. Davidson,Siyang Zheng,Guang Li
标识
DOI:10.1016/j.stem.2026.07.011
摘要
Heart valves maintain unidirectional blood flow, yet most understanding of their development and disease comes from animal models that do not fully capture human valve behavior. We present a human induced pluripotent stem cell (iPSC)-derived valve-like assembloid platform that models key aspects of in vivo valve features at the cellular and molecular levels. We found that mechanical forces, endothelial culture conditions, and fluidic shear stress respectively promote valve induction, maintenance, and extracellular matrix stratification. We further used this system to model human valve defects, including genetic mutations, injury, and hyperglycemia-related abnormalities. This assembloid platform enables the in vitro study of human valve development and disease mechanisms.
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