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间充质干细胞释放外泌体,这些外泌体将微小RNA转移至内皮细胞并促进血管生成。

Mesenchymal stem cells release exosomes that transfer miRNAs to endothelial cells and promote angiogenesis.

作者信息

Gong Min, Yu Bin, Wang Jingcai, Wang Yigang, Liu Min, Paul Christian, Millard Ronald W, Xiao De-Sheng, Ashraf Muhammad, Xu Meifeng

机构信息

Department of Pathology and Laboratory Medicine, University of Cincinnati Medical Center, Cincinnati, Ohio, USA.

Children's Nutrition Research Centre, Children's Hospital of Chongqing Medical University, Chongqing, China.

出版信息

Oncotarget. 2017 Jul 11;8(28):45200-45212. doi: 10.18632/oncotarget.16778.

Abstract

Mesenchymal stem cells (MSCs) have been found to benefit patients with a variety of ischemic diseases via promoting angiogenesis. It is also well established that exosomes secreted from MSCs deliver bioactive molecules, including microRNAs (miRs) to recipient cells. Therefore, we hypothesized that exosomes secreted from MSCs deliver miRs into endothelial cells and mediate angiogenesis. The pro-angiogenic stimulatory capacity of exosomes was investigated using tube-like structure formation and spheroid-based sprouting of human umbilical vein endothelial cells (HUVECs), and in vivo Matrigel plug assay. The secretion of pro-angiogenic miRs (pro-angiomiRs) from MSCs into culture medium and transfer of the miRs to HUVECs were confirmed using real-time quantitative PCR. Supplementation of the exosome secretion blocker GW4869 (10 μM) reduced the pro-angiomiRs in the MSC-derived conditioned medium (CdMMSC). Addition of exosomes isolated from CdMMSC could directly 1) promote HUVEC tube-like structure formation in vitro; 2) mobilize endothelial cells into Matrigel plug subcutaneously transplanted into mice; and 3) increase blood flow inside Matrigel plug. Fluorescence tracking showed that the exosomes were internalized rapidly by HUVECs causing an upregulated expression of pro-angiomiRs in HUVECs. Loss-and-gain function of the pro-angiomiRs (e.g., miR-30b) in MSCs significantly altered the pro-angiogenic properties of these MSC-derived exosomes, which could be associated with the regulation of their targets in HUVECs. These results suggest that exosomal transfer of pro-angiogenic miRs plays an important role in MSC mediated angiogenesis and stem cell-to-endothelial cell communication.

摘要

间充质干细胞(MSCs)已被发现可通过促进血管生成使各种缺血性疾病患者受益。同样明确的是,MSCs分泌的外泌体可将包括微小RNA(miRs)在内的生物活性分子传递给受体细胞。因此,我们推测MSCs分泌的外泌体将miRs传递到内皮细胞中并介导血管生成。使用人脐静脉内皮细胞(HUVECs)的管状结构形成和基于球体的发芽以及体内基质胶栓试验研究了外泌体的促血管生成刺激能力。使用实时定量PCR确认了MSCs向培养基中分泌促血管生成miRs(促血管生成微小RNA)以及这些miRs向HUVECs的转移。外泌体分泌阻滞剂GW4869(10 μM)的添加降低了MSC来源的条件培养基(CdMMSC)中的促血管生成miRs。添加从CdMMSC中分离的外泌体可直接:1)促进体外HUVEC管状结构的形成;2)将内皮细胞募集到皮下移植到小鼠体内的基质胶栓中;3)增加基质胶栓内的血流量。荧光追踪显示外泌体被HUVECs迅速内化,导致HUVECs中促血管生成miRs的表达上调。MSCs中促血管生成miRs(例如miR-30b)的功能丧失和获得显著改变了这些MSC来源的外泌体的促血管生成特性,这可能与其在HUVECs中的靶标的调节有关。这些结果表明,促血管生成miRs的外泌体转移在MSC介导的血管生成和干细胞与内皮细胞通讯中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c06d/5542178/192664475560/oncotarget-08-45200-g001.jpg

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