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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and Characterization of Collagen-Based Composite Conduit for Peripheral Nerve Regeneration
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Preparation and Characterization of Collagen-Based Composite Conduit for Peripheral Nerve Regeneration

机译:胶原蛋白复合物用于周围神经再生的制备及表征

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Collagen-based composite nerve conduit scaffold was prepared by freeze-drying steam-extrusion method and modified chemically with glutaraldehyde (GTA) by adding chitosan into collagen. Fourier transform infrared spectroscopy showed that the collagen and chitosan are certainly crosslinked through GTA. It was observed under scanning electron microscope that the modified nerve conduit material is a porous three-dimensional crosslinked structure and the quantity ratio of the collagen to chitosan has influence on the morphology. The cell proliferation experiment results showed that the collagen- based composite scaffold prompts the adhesion and proliferation of cells, but as the chitosan increasing, the cell proliferation decreased slightly. The swelling property, the collagenase degradation, and the mechanical property of the scaffold are tested at the quantity ratios of collagen to chitosan 4 : 3, 3 : 1, and 4 : 1 and crosslinking time 0.5 and 1.0 h. The experiments show that the stability of the scaffold is enhanced with decreasing the quantity ratio of collagen to chitosan and increasing crosslinking time. Through the experimental investigations, the modifying technique parameters are discussed and the scaffold exhibits better physical and chemical properties at the quantity ratio of collagen to chitosan 3 : 1 and crosslinking time 0.5 h.
机译:冻干蒸汽挤压法制备胶原蛋白基复合神经导管支架,并在胶原蛋白中加入壳聚糖对戊二醛(GTA)进行化学修饰。傅里叶变换红外光谱表明,胶原蛋白和壳聚糖肯定是通过GTA交联的。在扫描电子显微镜下观察到,改性的神经导管材料是多孔的三维交联结构,胶原蛋白与壳聚糖的数量比对形态有影响。细胞增殖实验结果表明,基于胶原的复合支架促进细胞的粘附和增殖,但随着壳聚糖的增加,细胞增殖略有下降。在胶原蛋白与壳聚糖的比例为4:3、3:1和4:1以及交联时间为0.5和1.0h的条件下测试支架的溶胀性,胶原酶降解和机械性能。实验表明,通过降低胶原蛋白与壳聚糖的数量比和增加交联时间,可以提高支架的稳定性。通过实验研究,讨论了改性技术参数,在胶原蛋白与壳聚糖的比例为3:1,交联时间为0.5 h的条件下,该支架具有更好的理化性能。

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