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A study of a three-dimensional PLGA sponge containing natural polymers co-cultured with endothelial and mesenchymal stem cells as a tissue engineering scaffold

机译:含天然聚合物的三维PLGA海绵的研究与内皮和间充质干细胞共培养作为组织工程支架

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The interaction between vascular endothelial cells (ECs) and vascular smooth muscle cells (VSMCs) in a complex hemodynamic and mechanical environment plays an important role in the control of blood vessel growth and function. Despite the importance of VSMCs, substitutes are needed for vascular therapies. A potential VSMC substitute is human adult bone marrow derived mesenchymal stem cells (hMSCs). In this study, the effect of poly(lactic-co-glycolic acid) (PLGA) scaffolds containing three natural polymers (demineralized bone particles, silk, and small intestine submucosa) on the phenotype of MSCs and SMCs cultured with or without ECs was investigated. The study objective was to create a media equivalent for a tissue engineered blood vessel using PLGA, natural polymers, and MSCs co-cultured with ECs. The PLGA containing the natural polymers silk and SIS showed increased proliferation and cell adhesion. The presence of silk and DBP promoted a MSC phenotype change into a SMC-like phenotype at the mRNA level; however these differences at the protein level were not seen. Additionally, PLGA containing SIS did not induce SMC gene or protein upregulation. Finally, the effect of ECs in combination with the natural polymers was tested. When co-cultured with ECs, the mRNA of SMC specific markers in MSCs and SMCs were increased when compared to SMCs or MSCs alone. However, MSCs, when co-cultured with ECs on PLGA containing silk, exhibited significantly increased α-SMA and calponin expression when compared to PLGA only scaffolds. These results indicate that the natural polymer silk in combination with the co-culture of endothelial cells was most effective at increasing cell viability and inducing a SMC-like phenotype at the mRNA and protein level in MSCs.
机译:在复杂的血液动力学和机械环境中,血管内皮细胞(EC)和血管平滑肌细胞(VSMC)之间的相互作用在控制血管生长和功能中起着重要作用。尽管VSMC的重要性,但血管疗法仍需要替代品。潜在的VSMC替代品是人成年骨髓来源的间充质干细胞(hMSCs)。在这项研究中,研究了含有三种天然聚合物(去矿质骨颗粒,蚕丝和小肠粘膜下层黏膜)的聚乳酸-乙醇酸共聚物(PLGA)支架对经或不经ECs培养的MSC和SMCs表型的影响。 。该研究目标是使用PLGA,天然聚合物和与EC共培养的MSC,为组织工程血管创造等效的培养基。包含天然聚合物丝和SIS的PLGA显示出增加的增殖和细胞粘附。丝和DBP的存在促进了mRNA水平上的MSC表型转变为SMC样表型。然而,在蛋白质水平上没有看到这些差异。此外,含有SIS的PLGA不会诱导SMC基因或蛋白质上调。最后,测试了EC与天然聚合物结合的效果。与EC共同培养时,与单独的SMC或MSC相比,MSC和SMC中SMC特异性标志物的mRNA增加。然而,与仅含PLGA的支架相比,MSC与ECs在含PLGA的蚕丝上共培养时,其α-SMA和钙蛋白的表达显着增加。这些结果表明,天然聚合物丝与内皮细胞的共培养相结合最有效地增加了细胞的生存能力,并在MSCs的mRNA和蛋白水平上诱导了SMC样表型。

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