首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Laminin-modified and aligned poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polyethylene oxide nanofibrous nerve conduits promote peripheral nerve regeneration
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Laminin-modified and aligned poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polyethylene oxide nanofibrous nerve conduits promote peripheral nerve regeneration

机译:层粘连蛋白改性和对准聚(3-羟基丁酸酯-CO-3-羟基戊羟戊烯)/聚环氧乙烷纳米纤维神经管道促进周围神经再生

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摘要

Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) has received much attention for its biodegradability and biocompatibility, characteristics that are required in tissue engineering. In this study, polyethylene oxide (PEO)-incorporated PHBV nanofibres with random or aligned orientation were obtained by electrospinning. For further use in vivo, the nanofibre films were made into nerve conduits after treatment with NH3 plasma, which could improve the hydrophilicity of inner surfaces of nerve conduits and then facilitate laminin adsorption via electrostatic interaction for promoting cell adhesion and proliferation. Morphology of the surfaces of modified PHBV/PEO nanofibrous scaffolds were examined by scanning electron microscopy. Schwann cell viability assay was conducted and the results confirmed that the functionalized nanofibres were favourable for cell growth. Morphology of Schwann cells cultured on scaffolds showed that aligned nanofibrous scaffolds provided topographical guidance for cell orientation and elongation. Furthermore, three-dimensional PHBV/PEO nerve conduits made from aligned and random-oriented nanofibres were implanted into 12-mm transected sciatic nerve rat model and subsequent analysis were conducted at 1 and 2months postsurgery. The above functionalized PHBV/PEO scaffolds provide a novel and promising platform for peripheral nerve regeneration. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:聚(3-羟基丁酸酯-CO-3-羟基戊戊烷)(PHBV)对其生物降解性和生物相容性的重视,组织工程所需的特征非常关注。在该研究中,通过静电素获得具有随机或取向取向的聚环氧乙烷(PEO)-inclated PHBV纳米纤维。为了进一步用在体内,用NH3血浆处理后,将纳米纤维薄膜制成神经导管,这可以改善神经导管的内表面的亲水性,然后通过静电相互作用促进层粘连蛋白吸附以促进细胞粘附和增殖。通过扫描电子显微镜检查改性PHBV / PEO纳米纤维支架的表面的形态。进行施万氏细胞活力测定,结果证实官能化纳米纤维是有利于细胞生长的。在支架上培养的Schwann细胞的形态显示,对齐的纳米纤维支架提供了细胞取向和伸长的地形引导。此外,将由对准和随机纳米纤维制成的三维PHBV / PEO神经导管植入12mm横切的坐骨神经大鼠模型中,随后的分析在1和2个月后的后期进行。上述功能化PHBV / PEO支架提供了一种用于外周神经再生的新颖和有前途的平台。版权所有(c)2016 John Wiley&Sons,Ltd。

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