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Alginate-coated chitosan membrane for guided tissue regeneration

机译:藻酸盐涂层的壳聚糖膜可引导组织再生

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Chitosan membranes were first prepared by a thermally induced phase separation method and then alginate was coated on one side of the membranes by a modified dialysis apparatus to prepare alginate/chitosan membranes (A/C membranes). Electron spectroscopy for chemical analysis (ESCA), scanning electron microscope, and contact angle measurements were conducted to evaluate the surface characteristics. The mechanical strength, degradation behavior, and cell adhesion test were performed to evaluate the feasibility of using A/C membrane in guided tissue regeneration applications. The results revealed that alginates could effectively be coated onto the chitosan membrane. As observed in ESCA results, the N-atomic emission peak was decreased from originally 6.2% on the untreated chitosan surface to 2% on the alginate-treated surface. The contact angle decreased on the alginate-modified side substantially, compared with the untreated side (from 88.4 degrees to 34.2 degrees). The A/C membrane had a higher water content of 71.8% in comparison to the chitosan membrane of 61.8%. Consequently, A/C membrane became stiffer and had a higher Young's modulus and strength. After a 30-day in vitro shaking test, the weight of membranes was degraded to about 75% from the original. The 3T3 fibroblast cells showed less adhesion to alginate-modified side as compared to the untreated chitosan-side in cell adhesion test. (c) 2006 Wiley Periodicals, Inc.
机译:首先通过热诱导相分离法制备壳聚糖膜,然后通过改进的透析装置将藻酸盐涂覆在膜的一侧上以制备藻酸盐/壳聚糖膜(A / C膜)。进行了用于化学分析的电子光谱(ESCA),扫描电子显微镜和接触角测量,以评估表面特性。进行了机械强度,降解行为和细胞粘附试验,以评估在引导的组织再生应用中使用A / C膜的可行性。结果表明,藻酸盐可以有效地涂覆在壳聚糖膜上。如在ESCA结果中所观察到的,N原子发射峰从未处理的壳聚糖表面上的最初6.2%降低到藻酸盐处理过的表面上的2%。与未处理侧相比,藻酸盐改性侧的接触角显着减小(从88.4度到34.2度)。与壳聚糖膜的61.8%相比,A / C膜的水含量更高,为71.8%。因此,A / C膜变得更硬并且具有更高的杨氏模量和强度。经过30天的体外摇动试验,膜的重量从原来的膜降到了约75%。与未处理的壳聚糖侧相比,3T3成纤维细胞在藻酸盐修饰侧的粘附性较弱。 (c)2006年Wiley Periodicals,Inc.

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