首页> 外文会议>ASME International Design Engineering Technical Conferences >DOUBLE-LAYER NERVE GUIDE CONDUIT WITH PALISADE POLY(LACTIC-CO- GLYCOLIC ACID) TUBE WRAPPED BY MICROPOROUS CHITOSAN-COLLAGEN COMPOSITE
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DOUBLE-LAYER NERVE GUIDE CONDUIT WITH PALISADE POLY(LACTIC-CO- GLYCOLIC ACID) TUBE WRAPPED BY MICROPOROUS CHITOSAN-COLLAGEN COMPOSITE

机译:用微孔壳聚糖 - 胶原蛋白复合材料包裹的双层神经引导管道与普拉索德聚(乳酸共乙酸)管

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In this study, a double-layer nerve guide conduit (DLNGC) that comprises an inner poly(lactic-co-glycolic acid) (PLGA) scaffold with palisade structure and an outer micro-porous chitosan-collagen composite (CSC) membrane was developed. The PLGA scaffold was fabricated using the commonly used soft-lithography process and then rolled into a tube. The micro-porous CSC membrane was fabricated by lyophilization (freeze-drying), with its pore size being controlled by the chitosan:collagen weight ratio. The CSC properties such as water absorption rate, permeation rate, and biocompatibility were then measured. The CSC containing 25% chitosan (CSC-25%) has a high water absorption and permeation rates. Hence, it was adopted as the outer structure of the developed nerve conduit scaffold. After wrapping a palisade PLGA tube with a CSC-25% membrane to complete a DLNGC, mouse brain neural stem cells KT98 were injected into the inner PLGA scaffold through the pores of the outer CSC membrane. Images of biopsy samples illustrate that KT98 cells can be immobilized on the CSC-25% membrane after seven days' culture. On the 14th day of culture, the thickness of the KT98 cells was found to have increased, and the cells were wrapped around the PLGA scaffold. The tissue section image further indicated that KT98 cells grew along the palisade structure of the PLGA scaffold.
机译:在本研究中,制定了一种双层神经引导管道(D1NGC),其包含具有俯视结构和外部微多孔壳聚糖 - 胶原复合物(CSC)膜的内聚(乳酸共聚糖酸)(PLGA)支架和外部微观多孔壳聚糖复合物(CSC)膜。 。使用常用的软光刻工艺制造PLGA支架,然后卷成管子。通过冻干(冷冻干燥)制造微多孔CSC膜,其孔径由壳聚糖控制:胶原重量比。然后测量诸如吸水率,渗透率和生物相容性的CSC性质。含有25%壳聚糖(CSC-25%)的CSC具有高吸水性和渗透率。因此,它被用作发育的神经管道支架的外部结构。用CSC-25%膜包裹拨栅柱子管以完成DLNGC,将小鼠脑神经干细胞KT98通过外部CSC膜的孔注入内部PLGA支架中。活检样品的图像说明在七天培养后可以在CSC-25%膜上固定KT98细胞。在培养的第14天,发现KT98细胞的厚度增加,并且细胞缠绕在PLGA支架上。组织截面图像进一步表明KT98电池沿着PLGA支架的俯仰结构增长。

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