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胶原蛋白与细胞受体的分子相互作用及其生物学功能

The Molecular Interaction of Collagen with Cell Receptors for Biological Function.

作者信息

Elango Jeevithan, Hou Chunyu, Bao Bin, Wang Shujun, Maté Sánchez de Val José Eduardo, Wenhui Wu

机构信息

Department of Marine Bio-Pharmacology, College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China.

Department of Biomaterials Engineering, Universidad Católica San Antonio de Murcia, 30107 Murcia, Spain.

出版信息

Polymers (Basel). 2022 Feb 23;14(5):876. doi: 10.3390/polym14050876.

Abstract

Collagen, an extracellular protein, covers the entire human body and has several important biological functions in normal physiology. Recently, collagen from non-human sources has attracted attention for therapeutic management and biomedical applications. In this regard, both land-based animals such as cow, pig, chicken, camel, and sheep, and marine-based resources such as fish, octopus, starfish, sea-cucumber, and jellyfish are widely used for collagen extraction. The extracted collagen is transformed into collagen peptides, hydrolysates, films, hydrogels, scaffolds, sponges and 3D matrix for food and biomedical applications. In addition, many strategic ideas are continuously emerging to develop innovative advanced collagen biomaterials. For this purpose, it is important to understand the fundamental perception of how collagen communicates with receptors of biological cells to trigger cell signaling pathways. Therefore, this review discloses the molecular interaction of collagen with cell receptor molecules to carry out cellular signaling in biological pathways. By understanding the actual mechanism, this review opens up several new concepts to carry out next level research in collagen biomaterials.

摘要

胶原蛋白是一种细胞外蛋白质,覆盖整个人体,在正常生理过程中具有多种重要的生物学功能。最近,非人类来源的胶原蛋白在治疗管理和生物医学应用方面受到了关注。在这方面,陆地动物如牛、猪、鸡、骆驼和绵羊,以及海洋资源如鱼、章鱼、海星、海参和水母都被广泛用于提取胶原蛋白。提取的胶原蛋白被转化为胶原蛋白肽、水解产物、薄膜、水凝胶、支架、海绵和3D基质,用于食品和生物医学应用。此外,许多战略构想不断涌现,以开发创新的先进胶原蛋白生物材料。为此,了解胶原蛋白如何与生物细胞的受体相互作用以触发细胞信号通路的基本认识很重要。因此,本综述揭示了胶原蛋白与细胞受体分子的分子相互作用,以在生物途径中进行细胞信号传导。通过了解实际机制,本综述开辟了几个新的概念,以便在胶原蛋白生物材料方面进行更高水平的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5d1/8912536/c4190b761ae3/polymers-14-00876-g001.jpg

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