Adiponectin Stimulates Exosome Release to Enhance Mesenchymal Stem-Cell-Driven Therapy of Heart Failure in Mice

间充质干细胞 外体 细胞生物学 微泡 移植 间质细胞 胞外囊泡 癌症研究 内科学 干细胞 生物 医学 小RNA 生物化学 基因
作者
Yuto Nakamura,Satomi Kita,Yoshimitsu Tanaka,Shiro Fukuda,Yoshinari Obata,Tomonori Okita,Hiroyuki Nishida,Yuki Takahashi,Yusuke Kawachi,Yuri Tsugawa-Shimizu,Yuya Fujishima,Hitoshi Nishizawa,Yoshinobu Takakura,Shigeru Miyagawa,Yoshiki Sawa,Norikazu Maeda,Iichiro Shimomura
出处
期刊:Molecular Therapy [Elsevier BV]
卷期号:28 (10): 2203-2219 被引量:89
标识
DOI:10.1016/j.ymthe.2020.06.026
摘要

Mesenchymal stem/stromal cells (MSCs) are cultured adult stem cells that originally reside in virtually all tissues, and the gain of MSCs by transplantation has become the leading form of cell therapy in various diseases. However, there is limited knowledge on the alteration of its efficacy by factors in recipients. Here, we report that the cardioprotective properties of intravenously injected MSCs in a mouse model of pressure-overload heart failure largely depend on circulating adiponectin, an adipocyte-secreted factor. The injected MSCs exert their function through exosomes, extracellular vesicles of endosome origin. Adiponectin stimulated exosome biogenesis and secretion through binding to T-cadherin, a unique glycosylphosphatidylinositol-anchored cadherin, on MSCs. A pharmacological or adenovirus-mediated genetic increase in plasma adiponectin enhanced the therapeutic efficacy of MSCs. Our findings provide novel insights into the importance of adiponectin in mesenchymal-progenitor-mediated organ protections. Mesenchymal stem/stromal cells (MSCs) are cultured adult stem cells that originally reside in virtually all tissues, and the gain of MSCs by transplantation has become the leading form of cell therapy in various diseases. However, there is limited knowledge on the alteration of its efficacy by factors in recipients. Here, we report that the cardioprotective properties of intravenously injected MSCs in a mouse model of pressure-overload heart failure largely depend on circulating adiponectin, an adipocyte-secreted factor. The injected MSCs exert their function through exosomes, extracellular vesicles of endosome origin. Adiponectin stimulated exosome biogenesis and secretion through binding to T-cadherin, a unique glycosylphosphatidylinositol-anchored cadherin, on MSCs. A pharmacological or adenovirus-mediated genetic increase in plasma adiponectin enhanced the therapeutic efficacy of MSCs. Our findings provide novel insights into the importance of adiponectin in mesenchymal-progenitor-mediated organ protections.
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