旁分泌信号
心肌梗塞
骨髓
血管生成
医学
生长因子
癌症研究
疤痕
髓样
心力衰竭
心功能曲线
生物
细胞生物学
病理
内科学
受体
作者
Mortimer Korf‐Klingebiel,Marc R. Reboll,Stefanie Klede,Torben Brod,Andreas Pich,Felix Polten,Lars Christian Napp,Johann K Bauersachs,Arnold Ganser,Eva Brinkmann,Ines Reimann,Tibor Kempf,Hans W.M. Niessen,Jacques Mizrahi,Hans‐Joachim Schönfeld,Antonio Iglesias,María Bobadilla,Yong Wang,Kai Christoph Wollert
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2015-01-12
卷期号:21 (2): 140-149
被引量:227
摘要
Paracrine-acting proteins are emerging as a central mechanism by which bone marrow cell-based therapies improve tissue repair and heart function after myocardial infarction (MI). We carried out a bioinformatic secretome analysis in bone marrow cells from patients with acute MI to identify novel secreted proteins with therapeutic potential. Functional screens revealed a secreted protein encoded by an open reading frame on chromosome 19 (C19orf10) that promotes cardiac myocyte survival and angiogenesis. We show that bone marrow-derived monocytes and macrophages produce this protein endogenously to protect and repair the heart after MI, and we named it myeloid-derived growth factor (MYDGF). Whereas Mydgf-deficient mice develop larger infarct scars and more severe contractile dysfunction compared to wild-type mice, treatment with recombinant Mydgf reduces scar size and contractile dysfunction after MI. This study is the first to assign a biological function to MYDGF, and it may serve as a prototypical example for the development of protein-based therapies for ischemic tissue repair.
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