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Exploring the potential of the recombinant human collagens for biomedical and clinical applications: a short review

机译:探索生物医学和临床应用重组人胶原蛋白的潜力:简要审查

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Natural animal collagen and its recombinant collagen are favourable replacements in human tissue engineering due to their remarkable biomedical property. However, this exploitation is largely restricted due to the potential of immunogenicity and virus contamination. Exploring new ways to produce human collagen is fundamental to its biomedical and clinical application. All human fibrillar collagen molecules have three polypeptide chains constructed from a repeating Gly-Xaa-Yaa triplet, where Xaa and Yaa represent one random amino acid. Using cDNA techniques to modify several repeat sequences of the cDNA fragment, a novel human collagen, named recombinant human-like collagen (rHLC), with low immunogenicity and little risk from hidden virus can be engineered and notably tailored to speci?c applications. Human-like collagen (HLC) was initially used as a coating to modify the tissue engineering scaffold, and then used as the scaffold after cross-link agents were added to increase its mechanical strength. Due to its good biocompatibility, low immunogenicity, stabilised property, and the ability of mass production, HLC has been widely used in skin injury treatments, vascular scaffolds engineering, cartilage, bone defect repair, skincare, haemostatic sponge, and drug delivery, including coating with medical nanoparticles. In this review, we symmetrically reviewed the development, recent advances in design and application of HLC, and other recombinant human collagen-based biomedicine potentials. At the end, future improvements are also discussed.
机译:由于其显着的生物医学性质,天然动物胶原蛋白及其重组胶原蛋白在人体组织工程中是有利的。然而,由于免疫原性和病毒污染的可能性,这种剥削在很大程度上受到限制。探索生产人胶原蛋白的新方法是其生物医学和临床应用的基础。所有人类纤维状胶原蛋白分子都有三个从重复的甘氨酸XAA-YAA三联体构成的多肽链,其中XAA和YAA代表一种随机氨基酸。使用cDNA技术来修饰cDNA片段的多个重复序列,一种新的人胶原,名为重组人样胶原(RHLC)的,具有低免疫原性和隐藏病毒的风险少,可以设计和显着地定制于特定应用。最初用作涂层以改变组织工程支架的人样胶原(HLC),然后在加入交联剂后用作支架以增加其机械强度。由于其良好的生物相容性,低免疫性性,稳定性,批量生产能力,HLC已广泛用于皮肤损伤处理,血管支架工程,软骨,骨缺损修复,护肤,止血海绵和药物递送,包括涂层用医疗纳米粒子。在这篇综述中,我们对称审查了HLC的设计和应用的最新进展,以及其他基于重组人胶原的生物医学潜力。最后,还讨论了未来的改进。

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