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A novel method for porous chitosan scaffold

机译:一种多孔壳聚糖支架的新方法

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This study is to develop a novel method for preparation of the chitosan scaffold having interconnected open pore structure and controlled pore distribution. For this, the effects of addition of non-solvent on chitosan solution were estimated. The porous scaffolds were typically prepared by solid-liquid separation and subsequent sublimation of solvent. Alcohol was used as non-solvent for chitosan. The difference of freezing temperature of each of the components induced the liquid-liquid and the liquid-solid phase separation via demixing solution (solvent/non-solvent/chitosan). The morphology, heterogeneous pore distribution and mechanical properties of the scaffolds were examined. The addition of non-solvent in chitosan solution was to make the controlled homogeneous micropores and improved interconnectivity between pores without any surface skin layer. For control chitosan scaffold, the pore size was mainly about 80-100 mu m. On the contrary, Pore diameters could be controlled mainly within the range 30-100 mu .m, with a variation of solvent/non-solvent ratio. The number of minute pore (4-25 mu m) over chitosan scaffold increased with increasing ratio of non-solvent. New prepared scaffold exhibited larger value of breaking elongation, more elasticity, but less tensile strength than that of control scaffold.
机译:该研究是开发一种新方法,用于制备具有互连的开放孔结构和受控孔分布的壳聚糖支架。为此,估计了在壳聚糖溶液上添加非溶剂的影响。多孔支架通常通过固液分离和随后的溶剂升华制备。醇用作壳聚糖的非溶剂。通过解剖溶液(溶剂/非溶剂/壳聚糖)诱导液体 - 液体和液固相分离的每种组分的冷冻温度的差异。检查了支架的形态,异质孔分布和机械性能。在壳聚糖溶液中加入非溶剂是在没有任何表面表层的情况下进行受控均匀的微孔并改善孔之间的互连。对于对照壳聚糖支架,孔径主要约为80-100亩。相反,孔径可能主要在30-100亩的范围内控制,具有溶剂/非溶剂比的变化。壳聚糖支架上的微小孔(4-25μm)的数量随着非溶剂的比例而增加。新的准备支架表现出较大的断裂伸长率,更具弹性,但抗拉强度较少的抗拉强度。

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