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Recent advances of collagen-based biomaterials: Multi-hierarchical structure, modification and biomedical applications

机译:基于胶原的生物材料的最新进展:多层次结构,修改和生物医学应用

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摘要

Collagen is the most abundant structural protein of connective tissues including skin, tendon, bone and cartilage in mammals. The complicated biosynthesis of nature collagen in vivo, involving numerous intracellular and extracellular steps, causes it to have a multi-hierarchical fibrous architecture. The bioactivity of collagen is mostly depended on its tertiary structure or above. In the past decades, collagen biomaterials have received many attentions in biological applications due to its excellent properties, such as low irnmunogenicity, biodegradable, biocompatibility, hydrophilicity, easy processing, etc. However, collagen is also suffering from the poor physical and chemical properties (mechanical strength, thermostability, resistance to enzyme and so on). Therefore, the modification of collagen in preparation process is necessary. This review will shed light on the crosslinking methods and the recent advances of collagen-based materials in biomedical applications including skin substitute, bone repair, tendon repair, cartilage repair, neural repair and delivery system.
机译:胶原蛋白是结缔组织中最丰富的结构蛋白质,包括哺乳动物的皮肤,肌腱,骨骼和软骨。体内的自然胶原蛋白的复杂生物合成,涉及多个细胞内和细胞外步骤,使其具有多等级纤维结构。胶原的生物活性大多依赖于其三级结构或以上。在过去的几十年中,胶原蛋白生物材料由于其优异的性能而在生物学应用中获得了许多关注,例如低厄运性,可生物降解,生物相容性,亲水性,易于加工等。然而,胶原蛋白也遭受了差的物理和化学性质(机械强度,热稳定性,抗酶耐药等)。因此,需要在制备过程中改变胶原蛋白。本综述将阐明交联方法和基于胶原基材料的最近进步,包括皮肤替代,骨骼修复,肌腱修复,软骨修复,神经修复和输送系统。

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