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DISSOLUTION AND REGENERATION OF COLLAGEN FIBERS USING IONIC LIQUID

机译:离子液体对胶原纤维的溶解和再生

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Due to the triple-helical structure and the strong inter- and intro-molecular forces including van der Waals bonds, hydrogen bonds, hydrophobic bonds, ionic bonds (interactions between oppositely charged residues)on side chain, skin collagen has very stable structure and is extremely hard to dissolve in common solvents. Ionic liquids have strong capability to destroy the hydrogen bonds and can be used to dissolve various natural polymers, e.g. cellulose, chitin, silk and starch. In this paper, native skin collagen fibers were successfully dissolved in the ionic liquid, 1-butyl-3-methylimidazolium chloride ([BMIM]Cl), and regenerated in different precipitators. The observation by polarized optical microscopy showed that the crystal structure of collagen fibers had been destroyed by [BMIM]Cl during the heating (Fig. 1). Temperature-dependent FTIRwas applied to detect the structural change of collagen/[BMIM]Cl during dissolving. The structure of regenerated collagen was characterized by FTIR and XRD. It showed that the triple helical structure of collagen had been partly destroyed during the dissolution and regeneration. The film forming ability and the thermostability of the regenerated collagen was highly dependent on the precipitating treatment. The possible mechanisms of dissolving of collagen in [BMIM]Cl and the regeneration in the precipitators have been proposed. The collagen/cellulose composite with different forms (film, fiber, gel) can be successfully prepared by using [BMIM]Cl as medium. This work was supported by the National Natural Science Foundation of China (20604026).
机译:由于三螺旋结构以及强大的分子间和分子内力,包括侧链上的范德华键,氢键,疏水键,离子键(带相反电荷的残基之间的相互作用),因此皮肤胶原蛋白具有非常稳定的结构,并且极难溶于普通溶剂。离子液体具有强大的破坏氢键的能力,可用于溶解各种天然聚合物,例如纤维素,甲壳质,丝绸和淀粉。在本文中,天然皮肤胶原纤维成功溶解在离子液体1-丁基-3-甲基咪唑鎓氯化物([BMIM] Cl)中,并在不同的沉淀器中再生。偏光显微镜观察表明,加热过程中[BMIM] Cl破坏了胶原纤维的晶体结构(图1)。依赖温度的傅立叶变换红外光谱(FTIR)用于检测胶原蛋白/ [BMIM] Cl在溶解过程中的结构变化。 FTIR和XRD表征了再生胶原的结构。结果表明,胶原蛋白的三螺旋结构在溶解和再生过程中被部分破坏。再生胶原的成膜能力和热稳定性高度依赖于沉淀处理。已经提出了将胶原蛋白溶解在[BMIM] Cl中和在沉淀器中再生的可能机理。使用[BMIM] Cl作为介质,可以成功制备具有不同形式(膜,纤维,凝胶)的胶原蛋白/纤维素复合物。这项工作得到了国家自然科学基金(20604026)的支持。

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