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Chitosan based scaffolds by lyophilization and sc.CO_2 assisted methods for tissue engineering applications

机译:通过冻干和sc.CO_2辅助方法制备的基于壳聚糖的支架在组织工程中的应用

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摘要

Porous chitosan scaffolds with possible tissue engineering applications were synthesized by using lyophilization and supercritical carbon dioxide (sc.CO_2) drying technique. 1% Chitosan (CS) solution in aq. acetic acid was treated with 37% formaldehyde solution; the resulting hydrogels were subjected to solvent-exchange prior to the final treatment procedures. Their morphology, pore structure, and physical properties were characterized by Fourier transform infrared spectroscopy (FTIR), thermal analysis, scanning electron microscopy (SEM), transmission electron microscopy (TEM) and the specific surface areas and porosities of scaffolds were determined by using N_2 adsorption. The sc.CO_2 treated scaffolds showed a much greater surface area in comparison to the lyophilized one. Hence, sc.CO _2 treated scaffolds is better for cell proliferation. We further investigated the bioactivity of sc.CO_2 treated scaffolds using simulated body fluid (SBF). The sc.CO_2 assisted chitosan scaffold prepared by using green chemistry approach is highly pure and from a hygienic point of view, it is an ideal material for tissue engineering applications.
机译:通过冻干和超临界二氧化碳(sc.CO_2)干燥技术合成了具有可能的组织工程应用的多孔壳聚糖支架。 1%的壳聚糖(CS)水溶液乙酸用37%甲醛溶液处理;在最终处理程序之前,将得到的水凝胶进行溶剂交换。通过傅里叶变换红外光谱(FTIR),热分析,扫描电子显微镜(SEM),透射电子显微镜(TEM)表征了它们的形态,孔结构和物理性质,并使用N_2确定了支架的比表面积和孔隙率吸附。与冻干的支架相比,经sc.CO_2处理的支架显示出大得多的表面积。因此,经sc.CO _2处理的支架更适合细胞增殖。我们进一步使用模拟体液(SBF)研究了经sc.CO_2处理的支架的生物活性。通过绿色化学方法制备的sc.CO_2辅助壳聚糖支架具有很高的纯度,从卫生的角度来看,它是组织工程应用的理想材料。

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