miR-130b-5p在心肌梗死后小鼠心肌细胞增殖和心脏修复中的关键作用。

IF 4 2区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
STEM CELLS Pub Date : 2024-01-13 DOI:10.1093/stmcls/sxad080
Ke Feng, Yukang Wu, Jianguo Li, Qiaoyi Sun, Zihui Ye, Xuan Li, Xudong Guo, Jiuhong Kang
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引用次数: 0

摘要

成人心肌细胞的增殖能力差是心肌梗死(MI)后心力衰竭的主要原因,因此探索促进成人心肌细胞增殖的分子和机制对MI后的心脏修复至关重要,我们发现miR-130b-5p在小鼠胚胎和新生儿心脏中高度表达,并且能够在体外和体内促进心肌细胞增殖。机制研究表明,miR-130b-5p主要通过MAPK-ERK信号通路促进心肌细胞增殖,而MAPK-ERK信号的负调控因子双特异性磷酸酶6(Dusp6)是miR-130b-5p的直接靶点。此外,我们发现miR-130b-5p的过表达可以促进心肌细胞的增殖,改善MI后小鼠的心脏功能。这些研究揭示了miR-130b-5p及其靶向MAPK-ERK信号在成年心脏心肌细胞增殖中的关键作用,并证明miR-130b-5p可能是MI后心脏修复的潜在靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Critical Role of miR-130b-5p in Cardiomyocyte Proliferation and Cardiac Repair in Mice After Myocardial Infarction.

Poor proliferative capacity of adult cardiomyocytes is the primary cause of heart failure after myocardial infarction (MI), thus exploring the molecules and mechanisms that promote the proliferation of adult cardiomyocytes is crucially useful for cardiac repair after MI. Here, we found that miR-130b-5p was highly expressed in mouse embryonic and neonatal hearts and able to promote cardiomyocyte proliferation both in vitro and in vivo. Mechanistic studies revealed that miR-130b-5p mainly promoted the cardiomyocyte proliferation through the MAPK-ERK signaling pathway, and the dual-specific phosphatase 6 (Dusp6), a negative regulator of the MAPK-ERK signaling, was the direct target of miR-130b-5p. Moreover, we found that overexpression of miR-130b-5p could promote the proliferation of cardiomyocytes and improve cardiac function in mice after MI. These studies thus revealed the critical role of miR-130b-5p and its targeted MAPK-ERK signaling in the cardiomyocyte proliferation of adult hearts and proved that miR-130b-5p could be a potential target for cardiac repair after MI.

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来源期刊
STEM CELLS
STEM CELLS 医学-生物工程与应用微生物
CiteScore
10.30
自引率
1.90%
发文量
104
审稿时长
3 months
期刊介绍: STEM CELLS, a peer reviewed journal published monthly, provides a forum for prompt publication of original investigative papers and concise reviews. STEM CELLS is read and written by clinical and basic scientists whose expertise encompasses the rapidly expanding fields of stem and progenitor cell biology. STEM CELLS covers: Cancer Stem Cells, Embryonic Stem Cells/Induced Pluripotent Stem (iPS) Cells, Regenerative Medicine, Stem Cell Technology: Epigenetics, Genomics, Proteomics, and Metabonomics, Tissue-Specific Stem Cells, Translational and Clinical Research.
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