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Development of 3D PVA scaffolds for cardiac tissue engineering and cell screening applications

机译:用于心脏组织工程和细胞筛选应用的3D PVA支架的开发

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The aim of this study was the design of a 3D scaffold composed of poly(vinyl) alcohol (PVA) for cardiac tissue engineering (CTE) applications. The PVA scaffold was fabricated using a combination of gas foaming and freeze-drying processes that did not need any cross-linking agents. We obtained a biocompatible porous matrix with excellent mechanical properties. We measured the stress–strain curves of the PVA scaffolds and we showed that the elastic behavior is similar to that of the extracellular matrix of muscles. The SEM observations revealed that the scaffolds possess micro pores having diameters ranging from 10 μm to 370 μm that fit to the dimensions of the cells. A further purpose of this study was to test scaffolds ability to support human induced pluripotent stem cells growth and differentiation into cardiomyocytes. As the proliferation tests show, the number of live stem cells on the scaffold after 12 days was increased with respect to the initial number of cells, revealing the cytocompatibility of the substrate. In addition, the differentiated cells on the PVA scaffolds expressed anti-troponin T, a marker specific of the cardiac sarcomere. We demonstrated the ability of the cardiomyocytes to pulse within the scaffolds. In conclusion, the developed scaffold show the potential to be used as a biomaterial for CTE applications.
机译:这项研究的目的是设计一种由聚乙烯醇(PVA)组成的3D支架,用于心脏组织工程(CTE)应用。使用不需要任何交联剂的气体发泡和冷冻干燥工艺的组合来制造PVA支架。我们获得了具有优异机械性能的生物相容性多孔基质。我们测量了PVA支架的应力-应变曲线,结果表明其弹性行为类似于肌肉细胞外基质的弹性行为。 SEM观察表明,支架具有微孔,其直径在10μm至370μm的范围内,适合细胞的尺寸。这项研究的另一个目的是测试支架支持人类诱导的多能干细胞生长和分化为心肌细胞的能力。如增殖试验所示,相对于初始细胞数,在12天后支架上的活干细胞数增加了,从而显示了底物的细胞相容性。另外,PVA支架上的分化细胞表达抗肌钙蛋白T,这是心肌肌小节特异性的标志物。我们证明了心肌细胞在支架内脉动的能力。总之,开发的支架显示出可用作CTE应用的生物材料的潜力。

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