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Construction and evaluation of fibrillar composite hydrogel of collagen/konjac glucomannan for potential biomedical applications

机译:胶原/康佳奇葡甘露聚糖原纤维复合水凝胶的构建和评价

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摘要

Konjac glucomannan (KGM) is recognized as a safe material for its health-promoting benefits and thus widely used in various fields including pharmaceutical industry. In recent decades, the combination of collagen and KGM attracts more attentions for biomedical purpose, especially the hybrid films of collagen–KGM or collagen–KGM–polysaccharide. In this study, to further and deeply develop the intrinsic values of both collagen and KGM as biomaterials, a novel kind of composite hydrogel comprising collagen and KGM at a certain ratio was fabricated under mild conditions via fibrillogenesis process of the aqueous blends of collagen and KGM that experienced deacetylation simultaneously. The chemical composition, microcosmic architectures, swelling behavior, biodegradation and dynamic mechanic properties of such resulted composite hydrogels were systematically investigated. Biologic experiments, including cell culture in vitro and hypodermic implantation in vivo, were also conducted on these collagen/KGM composite hydrogels to evaluate their biologic performances. The relevant results prove that, based on collagen self-assembly behavior, this synthesis strategy is efficient to construct a composite hydrogel of collagen/KGM with improved mechanical properties, biodegradability, excellent biocompatibility and bioactivity, which are promising for potential biomedical applications such as tissue engineering and regenerative medicine.
机译:魔芋葡甘露聚糖(KGM)具有促进健康的作用,被认为是一种安全的材料,因此已广泛用于包括制药工业在内的各个领域。近几十年来,胶原蛋白和KGM的结合在生物医学领域引起了越来越多的关注,尤其是胶原蛋白-KGM或胶原蛋白-KGM-多糖的混合膜。在这项研究中,为进一步和深入开发胶原蛋白和KGM作为生物材料的内在价值,通过胶原蛋白和KGM的水共混物的原纤维形成过程,在温和条件下制备了一种新型胶原蛋白和KGM的复合水凝胶。同时经历了脱乙酰作用系统研究了这种复合水凝胶的化学组成,微观结构,溶胀行为,生物降解和动态力学性能。还对这些胶原蛋白/ KGM复合水凝胶进行了生物学实验,包括体外细胞培养和体内皮下植入,以评估其生物学性能。相关结果证明,基于胶原蛋白的自组装行为,这种合成策略可有效地构建具有改善的机械性能,生物降解性,优异的生物相容性和生物活性的胶原蛋白/ KGM复合水凝胶,这对于潜在的生物医学应用(如组织)很有希望工程与再生医学。

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