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将人成纤维细胞直接转化为具有治疗活性的血管壁典型间充质干细胞。

Direct conversion of human fibroblasts into therapeutically active vascular wall-typical mesenchymal stem cells.

机构信息

Institute for Cell Biology (Cancer Research), University Hospital Essen, Medical Faculty, University of Duisburg-Essen, Virchowstr. 173, Ger-45122, Essen, Germany.

Research Unit Radiation Cytogenetics and Clinical Cooperation Group "Personalized Radiotherapy in Head and Neck Cancer, Helmholtz Zentrum München, German Research Center for Environmental Health GmbH, Neuherberg, Germany.

出版信息

Cell Mol Life Sci. 2020 Sep;77(17):3401-3422. doi: 10.1007/s00018-019-03358-0. Epub 2019 Nov 11.

Abstract

Cell-based therapies using adult stem cells are promising options for the treatment of a number of diseases including autoimmune and cardiovascular disorders. Among these, vascular wall-derived mesenchymal stem cells (VW-MSCs) might be particularly well suited for the protection and curative treatment of vascular damage because of their tissue-specific action. Here we report a novel method for the direct conversion of human skin fibroblasts towards MSCs using a VW-MSC-specific gene code (HOXB7, HOXC6 and HOXC8) that directs cell fate conversion bypassing pluripotency. This direct programming approach using either a self-inactivating (SIN) lentiviral vector expressing the VW-MSC-specific HOX-code or a tetracycline-controlled Tet-On system for doxycycline-inducible gene expressions of HOXB7, HOXC6 and HOXC8 successfully mediated the generation of VW-typical MSCs with classical MSC characteristics in vitro and in vivo. The induced VW-MSCs (iVW-MSCs) fulfilled all criteria of MSCs as defined by the International Society for Cellular Therapy (ISCT). In terms of multipotency and clonogenicity, which are important specific properties to discriminate MSCs from fibroblasts, iVW-MSCs behaved like primary ex vivo isolated VW-MSCs and shared similar molecular and DNA methylation signatures. With respect to their therapeutic potential, these cells suppressed lymphocyte proliferation in vitro, and protected mice against vascular damage in a mouse model of radiation-induced pneumopathy in vivo, as well as ex vivo cultured human lung tissue. The feasibility to obtain patient-specific VW-MSCs from fibroblasts in large amounts by a direct conversion into induced VW-MSCs could potentially open avenues towards novel, MSC-based therapies.

摘要

利用成体干细胞的细胞疗法是治疗多种疾病的有前途的选择,包括自身免疫和心血管疾病。在这些疾病中,血管壁衍生的间充质干细胞(VW-MSCs)由于其组织特异性作用,可能特别适合用于保护和治疗血管损伤。在这里,我们报告了一种使用 VW-MSC 特异性基因代码(HOXB7、HOXC6 和 HOXC8)将人皮肤成纤维细胞直接转化为 MSC 的新方法,该基因代码绕过多能性指导细胞命运转化。这种使用表达 VW-MSC 特异性 HOX 编码的自失活(SIN)慢病毒载体或四环素控制的 Tet-On 系统进行 DOX 诱导的 HOXB7、HOXC6 和 HOXC8 基因表达的直接编程方法,成功地介导了 VW-典型 MSC 的体外和体内生成具有经典 MSC 特征。诱导的 VW-MSCs(iVW-MSCs)满足了国际细胞治疗学会(ISCT)定义的 MSC 的所有标准。在多能性和克隆形成性方面,这是将 MSC 与成纤维细胞区分开来的重要特异性特征,iVW-MSCs 的行为与原代体外分离的 VW-MSCs 相似,并且具有相似的分子和 DNA 甲基化特征。就其治疗潜力而言,这些细胞在体外抑制淋巴细胞增殖,并在体内辐射诱导的肺疾病小鼠模型以及体外培养的人肺组织中保护小鼠免受血管损伤。通过直接转化为诱导的 VW-MSCs 从成纤维细胞中大量获得患者特异性 VW-MSCs 的可行性,可能为基于 MSC 的新型治疗方法开辟途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df80/11104812/9765378b3535/18_2019_3358_Fig1_HTML.jpg

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