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Conjunctiva derived mesenchymal stem cell (CJMSCs) as a potential platform for differentiation into corneal epithelial cells on bioengineered electrospun scaffolds

机译:结膜衍生的间充质干细胞(CJMSCs)作为分化成生物工程的Electromat支架上的角膜上皮细胞的潜在平台

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Abstract With the aid of tissue engineering, the capability of nanofibrous scaffolds was examined for corneal epithelial differentiation of Conjunctiva mesenchymal stem cells (CJMSCs) as a new source. This study tried to provide a synthetic corneal sheet which could be applied in corneal regeneration. The hybrid arrangement of fine Silk fibers with the diameter of 93.65 nm and the polyurethane (PU) fibers with an average diameter of 575.5 makes a mat with sufficient mechanical properties and interconnected pores that could accelerate nutrient diffusion. After methanol and plasma treatment, the highest biocompatibility of Silk‐PU hybrid nanofibrous scaffolds based on cell attachment and proliferation were proven using MTT assay. The differentiation morphology of cells was observed by SEM micrographs of cells seeded on the scaffold after 12 days treatment through the differentiation medium. Despite up‐regulation of Cytokeratin (CK)3, CK8, CK12, Desmocollin (DSC)1, and Desmoglein (DSG)1 in the treated PU and silk hybrid nanofibrous scaffolds, the relative expression of CK3, CK8, and CK12 genes were highest among TCP, treated PU and silk nanofibrous scaffolds. Immunocytochemistry (ICC) analysis was used to characterize the protein expression of CK3 in CJ‐MSCs seeded on different groups. Although, For both TCP and hybrid group, CJ‐MSCs were positive for corneal epithelial‐specific marker CK3, ICC data demonstrated that CJ‐MSCs seeded on the hybrid group likewise PU or Silk pure nanofibrous scaffolds, could differentiate into corneal epithelial‐like cells. Finally, it was inferred that the hybrid PU and silk nanofibrous scaffold has the potential for the treatment of corneal epithelium. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2703–2711, 2017.
机译:摘要借助组织工程,检查了纳米纤维支架的能力,用于结膜性间充质干细胞(CJMSCs)的角膜上皮分化为新来源。该研究试图提供一种可应用于角膜再生的合成角膜片。具有直径为93.65nm的精细丝纤维的杂化布置和平均直径为575.5的聚氨酯(PU)纤维使垫具有足够的机械性能和可加速营养扩散的互连孔隙。甲醇和等离子体处理后,使用MTT测定证明了基于细胞附着和增殖的丝绸PU杂化纳米纤维支架的最高生物相容性。通过分化介质处理12天后,通过在支架上播种的细胞SEM微图来观察细胞的分化形态。尽管在处理的PU和丝杂化纳米纤维支架中上调(CK)3,CK8,CK12,DESMOCOLIN(DSC)1和DESMOLYIN(DSG)1,CK3,CK8和CK12基因的相对表达最高在TCP,处理过的PU和丝米纤维支架中。免疫细胞化学(ICC)分析用于表征CK3在不同组上的CK3中的蛋白质表达。虽然对于TCP和杂种组,CJ-MSCs对于角膜上皮特异性标记CK3是阳性的,但ICC数据表明,在杂交组上种植的CJ-MSCs同样的PU或丝绸纯纳米纤维支架可以分化为角膜上皮细胞。最后,推断杂交PU和丝纳米纤维支架具有治疗角膜上皮的可能性。还2017年Wiley期刊,Inc。J生物密制A部分:105A:2703-2711,2017。

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