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Cell-derived extracellular matrix-coated silk fibroin scaffold for cardiogenesis of brown adipose stem cells through modulation of TGF-β pathway

机译:通过调制TGF-β通路,细胞衍生的细胞外基质涂覆的丝纤维素支架用于棕色脂肪干细胞的血管生成

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The cell-derived extracellular matrix (ECM)-modified scaffolds have advantages of mimic tissue specificity and been thought to better mimic the native cellular microenvironment in vitro. ECM derived from cardiac fibroblasts (CFs) are considered as key elements that provide a natural cell growth microenvironment and change the fate of cardiomyocytes (CMs). Here, a new hybrid scaffold is designed based on silk fibroin (SF) scaffold and CFs-derived ECM. CFs were seeded on the SF scaffold for 10?days culturing and decellularized to produce CFs-derived ECM-coated SF scaffold. The results showed that the cell-derived ECM-modified silk fibroin scaffold material contained collagen, laminin, fibronectin and other ECM components with myocardial-like properties. Further to explore its effects on brown adipose stem cells (BASCs) differentiation into CMs. We found that the CF-derived ECM-coated scaffold also increased the expression of CM-specific proteins (e.g. cardiac troponin T and α-actinin) of BASCs. Notably, the β1-integrin-dependent transforming growth factor-β1 signaling pathway was also involved in the regulation of CF-derived ECM by promoting the differentiation of BASCs into CMs. Overall, these findings provide insights into the bionic manufacturing of engineered cardiac tissues (ECTs) and establish a theoretical basis for the construction of ECTs.
机译:所述细胞来源的细胞外基质(ECM)改性支架具有模仿组织特异性的优点和被认为在体外更好地模拟天然细胞微环境。 ECM从心脏成纤维细胞(CFS)被认为是提供一种天然细胞生长的微环境,改变心肌细胞(CMS)的命运关键要素的。在这里,新的混合型支架是基于丝素蛋白(SF)的支架和CFS源ECM设计。的CF接种在该SF支架10?天培养和脱细胞以产生CFS-来源的ECM涂覆的SF支架。结果表明,该细胞来源的ECM-改性丝心蛋白支架材料包含胶原蛋白,层粘连蛋白,纤连蛋白和其它ECM成分心肌样性质。进一步探讨其对褐色脂肪干细胞(BASCs)分化成的CM的效果。我们发现,CF-来源的ECM涂覆的支架也增加BASCs的CM-特定蛋白(例如肌钙蛋白T和α辅肌动蛋白)的表达。值得注意的是,β1整合素依赖性转化生长因子β1信号通路还通过促进BASCs分化成的CM参与CF源ECM的调节。总的来说,这些结果提供了见解仿生制造工程改造的心脏组织(学分)和用于的ECT的结构建立了理论基础。

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