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纳米图案化的心脏细胞贴片促进干细胞龛形成和心肌再生。

Nanopatterned cardiac cell patches promote stem cell niche formation and myocardial regeneration.

机构信息

Department of Bioengineering, University of Washington, Seattle, WA 98109, USA.

出版信息

Integr Biol (Camb). 2012 Sep;4(9):1019-33. doi: 10.1039/c2ib20067h. Epub 2012 Aug 13.

Abstract

Stem cell-based methods for myocardial regeneration suffer from considerable cell attrition. Artificial matrices reproducing mechanical and structural properties of the native tissue may facilitate survival, retention and functional integration of adult stem or progenitor cells, by conditioning the cells prior to, and during, transplantation. Here we combined autologous cardiosphere-derived cells (CDCs) with nanotopographically defined hydrogels mimicking the native myocardial matrix, to form in vitro cardiac stem cell niches, and control cell function and fate. These platforms were used to produce cardiac patches that could be transplanted at the site of infarct. In culture, highly anisotropic, but not more randomized nanotopographic, control augmented cell adhesion, migration, and proliferation. It also dramatically enhanced early, and, in the presence of mature cardiomyocytes, late cardiomyogenesis. Nanotopography sensing and transcriptional response was mediated via p190RhoGAP. In a rat infarction model, engraftment of nanofabricated scaffolds with CDCs enhanced retention and growth of transplanted cells, and their integration with the host tissue. The infarcted ventricle wall increased in thickness, with higher cell viability and better collagen organization. These results suggest that nanostructured polymeric materials that closely mimic the extracellular matrix structure on which cardiac cells reside in vivo can be both very effective tools in investigating the mechanisms of cardiac differentiation and the basis for cardiac tissue engineering, thus facilitating stem cell-based therapy in the heart.

摘要

基于干细胞的心肌再生方法存在相当大的细胞损耗。人工基质可以复制天然组织的机械和结构特性,通过在移植前和移植过程中对成体干细胞或祖细胞进行条件处理,从而促进其存活、保留和功能整合。在这里,我们将自体心脏球源性细胞(CDCs)与模仿天然心肌基质的纳米拓扑定义水凝胶结合,形成体外心脏干细胞生态位,以控制细胞功能和命运。这些平台可用于生产可移植到梗塞部位的心脏贴片。在培养中,高度各向异性但不更随机的纳米拓扑结构会增强细胞的黏附、迁移和增殖。它还显著增强了早期,并且在成熟心肌细胞存在的情况下,晚期心肌发生。纳米拓扑结构的感应和转录反应是通过 p190RhoGAP 介导的。在大鼠梗塞模型中,将具有 CDCs 的纳米制造支架移植到梗塞部位可增强移植细胞的保留和生长,并促进其与宿主组织的整合。梗塞的心室壁增厚,细胞活力更高,胶原组织更好。这些结果表明,纳米结构聚合物材料可以非常有效地模拟心脏细胞在体内所处的细胞外基质结构,不仅是研究心脏分化机制和心脏组织工程基础的有力工具,还可以促进心脏中的基于干细胞的治疗。

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