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用于软组织修复的基于肽的功能性生物材料。

Peptide-Based Functional Biomaterials for Soft-Tissue Repair.

作者信息

Hosoyama Katsuhiro, Lazurko Caitlin, Muñoz Marcelo, McTiernan Christopher D, Alarcon Emilio I

机构信息

Division of Cardiac Surgery Research, University of Ottawa Heart Institute, Ottawa, ON, Canada.

Biochemistry, Microbiology and Immunology Department, Faculty of Medicine, University of Ottawa, Ottawa, ON, Canada.

出版信息

Front Bioeng Biotechnol. 2019 Aug 23;7:205. doi: 10.3389/fbioe.2019.00205. eCollection 2019.

Abstract

Synthetically derived peptide-based biomaterials are in many instances capable of mimicking the structure and function of their full-length endogenous counterparts. Combine this with the fact that short mimetic peptides are easier to produce when compared to full length proteins, show enhanced processability and ease of modification, and have the ability to be prepared under well-defined and controlled conditions; it becomes obvious why there has been a recent push to develop regenerative biomaterials from these molecules. There is increasing evidence that the incorporation of peptides within regenerative scaffolds can result in the generation of structural recognition motifs that can enhance cell attachment or induce cell signaling pathways, improving cell infiltration or promote a variety of other modulatory biochemical responses. By highlighting the current approaches in the design and application of short mimetic peptides, we hope to demonstrate their potential in soft-tissue healing while at the same time drawing attention to the advances made to date and the problems which need to be overcome to advance these materials to the clinic for applications in heart, skin, and cornea repair.

摘要

在许多情况下,合成衍生的基于肽的生物材料能够模拟其全长内源性对应物的结构和功能。再加上与全长蛋白质相比,短模拟肽更容易生产,具有更高的可加工性和易于修饰的特点,并且能够在明确和可控的条件下制备;这就很明显地说明了为什么最近人们一直在推动从这些分子开发再生生物材料。越来越多的证据表明,在再生支架中掺入肽可以产生结构识别基序,从而增强细胞附着或诱导细胞信号通路,改善细胞浸润或促进各种其他调节性生化反应。通过强调短模拟肽设计和应用的当前方法,我们希望展示它们在软组织愈合中的潜力,同时提请注意迄今为止所取得的进展以及将这些材料推进到临床用于心脏、皮肤和角膜修复应用所需要克服的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2918/6716508/394b40dd5e98/fbioe-07-00205-S0001.jpg

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