Luo Tianzhi, Kiick Kristi L
Department of Materials Science and Engineering, University of Delaware, Newark, DE 19716.
Eur Polym J. 2013 Oct;49(10):2998-3009. doi: 10.1016/j.eurpolymj.2013.05.013.
Collagen is the most abundant protein in mammals, and there has been long-standing interest in understanding and controlling collagen assembly in the design of new materials. Collagen-like peptides (CLP), also known as collagen-mimetic peptides (CMP) or collagen-related peptides (CRP), have thus been widely used to elucidate collagen triple helix structure as well as to produce higher-order structures that mimic natural collagen fibers. This mini-review provides an overview of recent progress on these topics, in three broad topical areas. The first focuses on reported developments in deciphering the chemical basis for collagen triple helix stabilization, which we review not with the intent of describing the basic structure and biological function of collagen, but to summarize different pathways for designing collagen-like peptides with high thermostability. Various approaches for producing higher-order structures via CLP self-assembly, via various types of intermolecular interaction, are then discussed. Finally, recent developments in a new area, the production of polymer-CLP bioconjugates, are summarized. Biological applications of collagen contained hydrogels are also included in this section. The topics may serve as a guide for the design of collagen-like peptides and their bioconjugates for targeted application in the biomedical arena.
胶原蛋白是哺乳动物中含量最丰富的蛋白质,长期以来人们一直对在新型材料设计中理解和控制胶原蛋白组装感兴趣。因此,类胶原蛋白肽(CLP),也被称为胶原蛋白模拟肽(CMP)或胶原蛋白相关肽(CRP),已被广泛用于阐明胶原蛋白三螺旋结构以及产生模拟天然胶原纤维的高阶结构。本综述从三个广泛的主题领域概述了这些主题的最新进展。第一个主题聚焦于在解读胶原蛋白三螺旋稳定化化学基础方面的报道进展,我们回顾这部分内容并非旨在描述胶原蛋白的基本结构和生物学功能,而是总结设计具有高热稳定性类胶原蛋白肽的不同途径。接着讨论了通过CLP自组装经由各种分子间相互作用产生高阶结构的各种方法。最后,总结了一个新领域——聚合物-CLP生物共轭物生产方面的最新进展。本节还包括含胶原蛋白水凝胶的生物学应用。这些主题可为设计类胶原蛋白肽及其生物共轭物以在生物医学领域进行靶向应用提供指导。