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Electrospun nanofibrils embedded hydrogel composites for cell cultivation in a biomimetic environment

机译:静电纺丝纳米纤维嵌入的水凝胶复合材料,用于在仿生环境中进行细胞培养

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Hybrid composites composed of nanofibrils and hydrogels were fabricated for cell cultivation in a cell-friendly environment mimicking the extracellular matrix. Electrospun fibrous mats composed of polycaprolactone (PCL) were digested to nanofibrils (NF) under optimized conditions and subsequently incorporated into hydrogels composed of gelatin and alginate. The hydrogel hybrids containing nanofibrils (NF/hydrogel) were calcium-crosslinked and solidified with or without cells. The mechanical properties of the cell-incorporated NF/hydrogels were dramatically increased in proportion to the NF content in the NF/hydrogels after 7 days of cultivation. Mass erosion of the NF/hydrogel was significantly attenuated when NF content increased. Confocal microscopy revealed that fibroblasts cultivated in NF/hydrogels showed superior adhesion behavior onto the matrix compared to those without NF, and the formation of spindle and stress fibers was distinct in NF/hydrogels with a high NF content. Cells on NF/hydrogels showed higher levels of collagen synthesis as NF content increased. Thus, NF/hydrogels are expected to serve as a cell culture matrix facilitating cell–matrix interactions by combining supportive nanofibrils and hydrogels.
机译:制备了由纳米纤维和水凝胶组成的杂化复合材料,用于在细胞外环境中模拟细胞外基质的细胞培养。在最佳条件下将由聚己内酯(PCL)组成的电纺纤维毡消化成纳米原纤维(NF),然后将其掺入由明胶和藻酸盐组成的水凝胶中。将含有纳米原纤维(NF /水凝胶)的水凝胶杂化体进行钙交联,并在有或没有细胞的情况下进行固化。培养7天后,与细胞结合的NF /水凝胶的机械性能与NF /水凝胶中的NF含量成比例地显着增加。当NF含量增加时,NF /水凝胶的质量侵蚀显着减弱。共聚焦显微镜检查显示,与无NF相比,在NF /水凝胶中培养的成纤维细胞在基质上表现出优异的粘附行为,并且在具有高NF含量的NF /水凝胶中纺锤体和应力纤维的形成是明显的。随着NF含量的增加,NF /水凝胶上的细胞显示出更高水平的胶原蛋白合成。因此,NF /水凝胶有望通过结合支持性纳米原纤维和水凝胶,作为促进细胞-基质相互作用的细胞培养基质。

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