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SLIT3-ROBO4 激活促进人源工程组织中的血管网络形成和体内血管生成。

SLIT3-ROBO4 activation promotes vascular network formation in human engineered tissue and angiogenesis in vivo.

机构信息

Section of Cardiology, Department of Medicine, University of Chicago, Chicago, IL.

Department of Pathology, Center for Cardiovascular Biology, Institute for Stem Cell and Regenerative Medicine, University of Washington, Seattle, WA.

出版信息

J Mol Cell Cardiol. 2013 Nov;64:124-31. doi: 10.1016/j.yjmcc.2013.09.005.

DOI:10.1016/j.yjmcc.2013.09.005
PMID:24090675
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3885335/
Abstract

Successful implantation and long-term survival of engineered tissue grafts hinges on adequate vascularization of the implant. Endothelial cells are essential for patterning vascular structures, but they require supportive mural cells such as pericytes/mesenchymal stem cells (MSCs) to generate stable, functional blood vessels. While there is evidence that the angiogenic effect of MSCs is mediated via the secretion of paracrine signals, the identity of these signals is unknown. By utilizing two functionally distinct human MSC clones, we found that so-called "pericytic" MSCs secrete the pro-angiogenic vascular guidance molecule SLIT3, which guides vascular development by directing ROBO4-positive endothelial cells to form networks in engineered tissue. In contrast, "non-pericytic" MSCs exhibit reduced activation of the SLIT3/ROBO4 pathway and do not support vascular networks. Using live cell imaging of organizing 3D vascular networks, we show that siRNA knockdown of SLIT3 in MSCs leads to disorganized clustering of ECs. Knockdown of its receptor ROBO4 in ECs abolishes the generation of functional human blood vessels in an in vivo xenogenic implant. These data suggest that the SLIT3/ROBO4 pathway is required for MSC-guided vascularization in engineered tissues. Heterogeneity of SLIT3 expression may underlie the variable clinical success of MSCs for tissue repair applications.

摘要

工程化组织移植物的成功植入和长期存活取决于移植物的充分血管化。内皮细胞对于血管结构的形成至关重要,但它们需要支持性的周细胞/间充质干细胞(MSCs)来产生稳定、功能的血管。虽然有证据表明 MSC 的血管生成作用是通过旁分泌信号的分泌来介导的,但这些信号的身份尚不清楚。通过利用两种功能上不同的人 MSC 克隆,我们发现所谓的“周细胞样”MSC 分泌促血管生成的血管导向分子 SLIT3,它通过指导 ROBO4 阳性内皮细胞形成工程组织中的网络来引导血管发育。相比之下,“非周细胞样”MSC 表现出 SLIT3/ROBO4 途径的激活减少,并且不支持血管网络的形成。通过对组织中正在形成的 3D 血管网络进行活细胞成像,我们表明 MSC 中 SLIT3 的 siRNA 敲低导致 ECs 的无序聚类。在体内异种移植物中敲除 ECs 的其受体 ROBO4 会消除功能性人血管的生成。这些数据表明,SLIT3/ROBO4 途径是 MSC 引导工程化组织血管生成所必需的。SLIT3 表达的异质性可能是 MSC 用于组织修复应用的临床效果不同的基础。

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