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The effect of the fibre orientation of electrospun scaffolds on the matrix production of rabbit annulus fibrosus-derived stem cells

机译:静电纺丝支架的纤维取向对兔纤维环干细胞基质产生的影响

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摘要

Annulus fibrosus (AF) tissue engineering has recently received increasing attention as a treatment for intervertebral disc (IVD) degeneration; however, such engineering remains challenging because of the remarkable complexity of AF tissue. In order to engineer a functional AF replacement, the fabrication of cell-scaffold constructs that mimic the cellular, biochemical and structural features of native AF tissue is critical. In this study, we fabricated aligned fibrous polyurethane scaffolds using an electrospinning technique and used them for culturing AF-derived stem/progenitor cells (AFSCs). Random fibrous scaffolds, also prepared via electrospinning, were used as a control. We compared the morphology, proliferation, gene expression and matrix production of AFSCs on aligned scaffolds and random scaffolds. There was no apparent difference in the attachment or proliferation of cells cultured on aligned scaffolds and random scaffolds. However, compared to cells on random scaffolds, the AFSCs on aligned scaffolds were more elongated and better aligned, and they exhibited higher gene expression and matrix production of collagen-I and aggrecan. The gene expression and protein production of collagen-II did not appear to differ between the two groups. Together, these findings indicate that aligned fibrous scaffolds may provide a favourable microenvironment for the differentiation of AFSCs into cells similar to outer AF cells, which predominantly produce collagen-I matrix.
机译:纤维环(AF)组织工程作为椎间盘(IVD)变性的治疗方法近来受到越来越多的关注。然而,由于AF组织的复杂性,这种工程仍然具有挑战性。为了设计功能性AF替代物,模仿天然AF组织的细胞,生化和结构特征的细胞支架构建体的制造至关重要。在这项研究中,我们使用静电纺丝技术制备了对齐的纤维状聚氨酯支架,并将其用于培养AF衍生的干/祖细胞(AFSC)。也通过电纺丝制备的无规纤维支架用作对照。我们比较了对齐支架和随机支架上AFSC的形态,增殖,基因表达和基质产生。在对齐的支架和随机支架上培养的细胞的附着或增殖没有明显差异。但是,与随机支架上的细胞相比,对齐支架上的AFSC更长且排列更好,它们表现出更高的基因表达以及胶原蛋白I和聚集蛋白聚糖的基质产生。两组胶原蛋白II的基因表达和蛋白质产量似乎没有差异。在一起,这些发现表明对齐的纤维状支架可以为AFSCs分化成类似于外部AF细胞的细胞提供有利的微环境,所述外部AF细胞主要产生胶原蛋白-I基质。

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