Notch信号通路
医学
血管生成
再生(生物学)
心肌梗塞
心脏纤维化
心力衰竭
癌症研究
纤维化
再生医学
信号转导
心功能曲线
生物信息学
治疗性血管生成
氧化应激
神经科学
内皮
药理学
心肌
内皮功能障碍
干细胞
细胞生物学
细胞
心脏病学
细胞信号
内皮干细胞
作者
Zhang Zhicheng,FengQun Xie,Jie Cheng,Xinyue Liu,Xinran Wang,Jun Long,Qi-Mao Feng,Dongping Yuan
标识
DOI:10.3389/fcvm.2025.1669362
摘要
Myocardial infarction (MI) is a leading cause of death globally and is characterized by extensive cardiomyocyte death, fibrosis, and diminished cardiac function, leading to heart failure. The limited regenerative capacity and excessive fibrosis of the heart highlight the need for effective therapeutic strategies. The Notch signaling pathway, known for its role in cell fate determination and tissue repair, is transiently activated after MI in cardiomyocytes, endothelial cells, and smooth muscle cells. This activation modulates cardiac repair by reducing oxidative stress and apoptosis, regulating inflammation, promoting angiogenesis, and inhibiting fibrosis. Recent research has focused on targeting the Notch pathway to increase myocardial regeneration and angiogenesis via the use of gene therapy, small-molecule regulators, and cell-based therapies. For example, delivering Notch ligands through hydrogels has yielded promising results in preclinical studies, enhancing cardiac function and promoting angiogenesis. This review examines the molecular mechanisms by which Notch signaling influences cardiac repair post-MI. We also discuss its specific roles in cardiomyocyte regeneration, fibrosis inhibition, and angiogenesis enhancement. Additionally, this study evaluated the therapeutic potential of Notch pathway modulation, addressing clinical translation challenges, safety concerns, and the importance of personalized treatment strategies. Future research directions include leveraging gene editing and nanotechnology-based drug delivery to improve the efficacy and safety of Notch-targeted therapies for cardiovascular diseases.
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