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首页> 外文期刊>Biomaterials >Recapitulation of the embryonic cardiovascular progenitor cell niche.
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Recapitulation of the embryonic cardiovascular progenitor cell niche.

机译:概述胚胎心血管祖细胞的生态位。

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Stem or progenitor cell populations are often established in unique niche microenvironments that regulate cell fate decisions. Although niches have been shown to be critical for the normal development of several tissues, their role in the cardiovascular system is poorly understood. In this study, we characterized the cardiovascular progenitor cell (CPC) niche in developing human and mouse hearts, identifying signaling pathways and extracellular matrix (ECM) proteins that are crucial for CPC maintenance and expansion. We demonstrate that collagen IV (ColIV) and beta-catenin-dependent signaling are essential for maintaining and expanding undifferentiated CPCs. Since niches are three-dimensional (3D) structures, we investigated the impact of a 3D microenvironment that mimics the in vivo niche ECM. Employing electrospinning technologies, 3D in vitro niche substrates were bioengineered to serve as culture inserts. The three-dimensionality of these structures increased mouse embryonic stem cell differentiation into CPCs when compared to 2D control cultures, which was further enhanced by incorporation of ColIV into the substrates. Inhibiting p300-dependent beta-catenin signals with the small molecule IQ1 facilitated further expansion of CPCs. Our study represents an innovative approach to bioengineer cardiac niches that can serve as unique 3D in vitro systems to facilitate CPC expansion and study CPC biology.
机译:干细胞或祖细胞群体通常建立在调节细胞命运决定的独特利基微环境中。尽管壁ni已被证明对几种组织的正常发育至关重要,但人们对它们在心血管系统中的作用知之甚少。在这项研究中,我们表征了人类和小鼠心脏发育中的心血管祖细胞(CPC)生态位,确定了对CPC维持和扩展至关重要的信号通路和细胞外基质(ECM)蛋白。我们证明胶原蛋白IV(ColIV)和依赖β-连环蛋白的信号对于维持和扩大未分化的CPC是必不可少的。由于壁ches是三维(3D)结构,因此我们研究了模仿体内生态位ECM的3D微环境的影响。利用静电纺丝技术,对3D体外小生境基质进行了生物工程处理,以用作培养插入物。与2D对照培养相比,这些结构的三维结构增加了小鼠胚胎干细胞向CPC的分化,并通过将ColIV掺入基质进一步增强了分化。用小分子IQ1抑制p300依赖性β-catenin信号有助于CPC的进一步扩展。我们的研究代表了一种生物工程师心脏engine的创新方法,可以作为独特的3D体外系统来促进CPC扩展和研究CPC生物学。

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