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首页> 外文期刊>Acta biomaterialia >Aligned and random nanofibrous substrate for the in vitro culture of Schwann cells for neural tissue engineering.
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Aligned and random nanofibrous substrate for the in vitro culture of Schwann cells for neural tissue engineering.

机译:对齐并随机排列的纳米纤维底物,用于雪旺细胞的体外培养,用于神经组织工程。

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The current challenge in peripheral nerve tissue engineering is to produce an implantable scaffold capable of bridging long nerve gaps that will produce results similar to autograft without requiring the harvest of autologous donor tissue. Aligned and random polycaprolactone/gelatin (PCL/gelatin) nanofibrous scaffolds were fabricated for the in vitro culture of Schwann cells that assist in directing the growth of regenerating axons in nerve tissue engineering. The average fiber diameter attained by electrospinning of polymer blend (PCL/gelatin) ranged from 232+/-194 to 160+/-86nm with high porosity (90%). Blending PCL with gelatin resulted in increased hydrophilicity of nanofibrous scaffolds and yielded better mechanical properties, approaching those of PCL nanofibers. The biocompatibility of fabricated nanofibers was assessed for culturing and proliferation of Schwann cells by MTS assay. The results of the MTS assay and scanning electron microscopy confirmed that aligned and random PCL/gelatin nanofibrous scaffolds are suitable substrates for Schwann cell growth as compared to PCL nanofibrous scaffolds for neural tissue engineering.
机译:周围神经组织工程中的当前挑战是生产能够弥合长神经间隙的可植入支架,该支架将产生与自体移植相似的结果,而无需收获自体供体组织。对齐并随机排列的聚己内酯/明胶(PCL /明胶)纳米纤维支架用于施旺细胞的体外培养,可协助指导神经组织工程中再生轴突的生长。通过静电纺丝聚合物共混物(PCL /明胶)获得的平均纤维直径范围为232 +/- 194至160 +/- 86nm,并且具有高孔隙率(90%)。将PCL与明胶共混可提高纳米纤维支架的亲水性,并产生更好的机械性能,接近PCL纳米纤维。通过MTS分析评估了制造的纳米纤维的生物相容性,以用于雪旺细胞的培养和增殖。 MTS分析和扫描电子显微镜的结果证实,与用于神经组织工程的PCL纳米纤维支架相比,对齐且无规的PCL /明胶纳米纤维支架是施旺细胞生长的合适底物。

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