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首页> 外文期刊>Biotechnology and Bioengineering >Adipose stem cell-derived extracellular matrix represents a promising biomaterial by inducing spontaneous formation of prevascular-like structures by mvECs
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Adipose stem cell-derived extracellular matrix represents a promising biomaterial by inducing spontaneous formation of prevascular-like structures by mvECs

机译:脂肪干细胞衍生的细胞外基质代表了通过MVECs诱导自发形成的血管外结构的自发性形成的有前途的生物材料

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Tissue constructs of physiologically relevant scale require a vascular system to maintain cell viability. However, in vitro vascularization of engineered tissues is still a major challenge. Successful approaches are based on a feeder layer (FL) to support vascularization. Here, we investigated whether the supporting effect on the self-assembled formation of prevascular-like structures by microvascular endothelial cells (mvECs) originates from the FL itself or from its extracellular matrix (ECM). Therefore, we compared the influence of ECM, either derived from adipose-derived stem cells (ASCs) or adipogenically differentiated ASCs, with the classical cell-based FL. All cell-derived ECM (cdECM) substrates enabled mvEC growth with high viability. Prevascular-like structures were visualized by immunofluorescence staining of endothelial surface protein CD31 and could be observed on all cdECM and FL substrates but not on control substrate collagen I. On adipogenically differentiated ECM, longer and higher branched structures could be found compared with stem cell cdECM. An increased concentration of proangiogenic factors was found in cdECM substrates and FL approaches compared with controls. Finally, the expression of proteins associated with tube formation (E-selectin and thrombomodulin) was confirmed. These results highlight cdECM as promising biomaterial for adipose tissue engineering by inducing the spontaneous formation of prevascular-like structures by mvECs.
机译:生理相关规模的组织构建需要血管系统以维持细胞活力。然而,工程组织的体外血管化仍然是一个重大挑战。成功的方法基于馈线(FL)以支持血管化。在此,我们研究了对通过微血管内皮细胞(MVEC)的对血管外结构的自组装形成的支持效应来自F1本身或其细胞外基质(ECM)。因此,我们将ECM的影响与来自脂肪衍生的干细胞(ASCS)或促进分化的ASC的影响进行了比较,具有古典电池的FL。所有细胞衍生的ECM(CDECM)基板使MVEC生长使得具有高可行性。通过内皮表面蛋白CD31的免疫荧光染色可视化血管状结构,并且可以在所有CDECM和FL基板上观察,但不在对照基材胶原I.上与干细胞CDECM相比,可以找到更长且较高的支链结构。 。与对照相比,CDECM底物和FL方法中发现了常规因子的浓度增加。最后,确认了与管形成(E-选择素和血栓调节素)相关的蛋白质的表达。这些结果突出了CDECM作为脂肪组织工程的有前途的生物材料,通过MVEC诱导造型的血管外结构的自发形成。

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