首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Unidirectional neuronal cell growth and differentiation on aligned polyhydroxyalkanoate blend microfibres with varying diameters
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Unidirectional neuronal cell growth and differentiation on aligned polyhydroxyalkanoate blend microfibres with varying diameters

机译:单向神经元细胞生长和分化对取向的多羟基烷烷酸盐混合物微纤维,不同直径

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Abstract Polyhydroxyalkanoates (PHAs) are a family of prokaryotic‐derived biodegradable and biocompatible natural polymers known to exhibit neuroregenerative properties. In this work, poly(3‐hydroxybutyrate), P(3HB), and poly(3‐hydroxyoctanoate), P(3HO), have been combined to form blend fibres for directional guidance of neuronal cell growth and differentiation. A 25:75 P(3HO)/P(3HB) blend (PHA blend) was used for the manufacturing of electrospun fibres as resorbable scaffolds to be used as internal guidance lumen structures in nerve conduits. The biocompatibility of these fibres was studied using neuronal and Schwann cells. Highly aligned and uniform fibres with varying diameters were fabricated by controlling electrospinning parameters. The resulting fibre diameters were 2.4?±?0.3, 3.7?±?0.3, and 13.5?±?2.3?μm for small, medium, and large diameter fibres, respectively. The cell response to these electrospun fibres was investigated with respect to growth and differentiation. Cell migration observed on the electrospun fibres showed topographical guidance in accordance with the direction of the fibres. The correlation between fibre diameter and neuronal growth under two conditions, individually and in coculture with Schwann cells, was evaluated. Results obtained from both assays revealed that all PHA blend fibre groups were able to support growth and guide aligned distribution of neuronal cells, and there was a direct correlation between the fibre diameter and neuronal growth and differentiation. This work has led to the development of a family of unique biodegradable and highly biocompatible 3D substrates capable of guiding and facilitating the growth, proliferation, and differentiation of neuronal cells as internal structures within nerve conduits.
机译:摘要多羟基烷烷(PHA)是一种原核衍生的可生物降解和生物相容性天然聚合物的家族,已知是具有神经营养性的性质。在这项工作中,组合了聚(3-羟基丁酯),P(3HB)和聚(3-羟基乙酸酯)P(3HO),形成混合纤维以形成神经元细胞生长和分化的定向引导。使用25:75(3HO)/ P(3HB)混合物(PHA混合物)用于制造电纺纤维作为可再吸收的支架,以用作神经管道中的内部引导腔结构。使用神经元和Schwann细胞研究了这些纤维的生物相容性。通过控制静电纺丝参数制造具有不同直径的高度对准和均匀的纤维。对于小,培养基和大直径纤维,所得纤维直径为2.4≤0.3,3.7,3.7?±0.3和13.5?±2.3Ωμm。研究了对这些电纺纤维的细胞响应,相对于生长和分化研究。在电纺器纤维上观察到的细胞迁移显示根据纤维的方向的形貌引导。评估了两种条件下纤维直径和神经元生长的相关性,单独和与施旺细胞的共培养。从两种测定获得的结果显示,所有PHA共混纤维组都能够支持生长和指导神经元细胞的对齐分布,并且纤维直径和神经元生长与分化之间存在直接相关性。这项工作导致了一种能够引导和促进神经元细胞的生长,增殖和分化作为神经管道内的内部结构的独特生物降解和高度生物相容性的3D基材的开发。

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