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Tailoring weight ratio of PCL/PLA in electrospun three-dimensional nanofibrous scaffolds and the effect on osteogenic differentiation of stem cells

机译:电纺三维纳米纤维支架中PCL / PLA的剪裁重量及对干细胞骨质发生分化的影响

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摘要

Three-dimensional (3D) scaffolds as artificial ECMs have been extensively studied to mimic the critical features of natural ECMs. To develop more clinically relevant 3D scaffolds, electrospun nanofibrous scaffolds with different weight ratios of PCL/PLA (ie., 100/0, 60/40, and 20/80) were fabricated via the thermally induced (nanofiber) self-agglomeration (TISA) method. The hypothesis was that, with the weight ratio increase of stiffer and more bioactive PLA in the 3D PCL/PLA blend scaffolds, the osteogenic differentiation of human mesenchymal stem cells (hMSCs) would be enhanced. The results indicated that, all of the 3D scaffolds were elastic/resilient and possessed interconnected and hierarchical pores with sizes from sub-microns to similar to 300 mu m; therefore, the morphological structures of these scaffolds were similar to those of natural ECMs. The PLA80 scaffolds exhibited the best overall properties in terms of density, porosity, water absorption capacity, mechanical properties, bioactivity, and cell viability. Furthermore, with increasing the PLA weight ratio, the alkaline phosphatase (ALP) activity, calcium content, and gene expression level were also increased, probably due to the improved stiffness/bioactivity of scaffold. Hence, the novel 3D electrospun PLA80 nanofibrous scaffold might be desired/favorable for the osteogenic differentiation of hMSCs.
机译:作为人造ECM的三维(3D)支架已被广泛研究以模仿自然ECM的关键特征。为了开发更多临床相关的3D支架,通过热诱导(纳米纤维)自聚集(TISA ) 方法。假设是,在3D PCL / PLA混合物支架中的静脂和更多的生物活性PLA的重量比增加,将提高人间充质干细胞(HMSCs)的骨化分化。结果表明,所有的3D支架都是弹性/弹性的,并且具有从子微米的尺寸的互连和分层孔隙,与300μm;因此,这些支架的形态学结构与天然ECM的形态结构类似。 PLA80支架在密度,孔隙率,吸水能力,机械性能,生物活性和细胞活力方面表现出最佳的整体性质。此外,随着PLA重量比,碱性磷酸酶(ALP)活性,钙含量和基因表达水平也增加,可能是由于支架的刚度/生物活性的改善。因此,对于HMSCs的成骨分化,可能需要新型3D Electromun PLA80纳米纤维支架。

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