Stylianou Andreas
Cancer Mechanobiology and Applied Biophysics Group, Basic and Translational Cancer Research Center, School of Sciences, European University Cyprus, Nicosia 2404, Cyprus.
Materials (Basel). 2022 Feb 21;15(4):1608. doi: 10.3390/ma15041608.
The collagen superfamily includes more than fifty collagen and/or collagen-like proteins with fibril-forming collagen type I being the most abundant protein within the extracellular matrix. Collagen type I plays a crucial role in a variety of functions, it has been associated with many pathological conditions and it is widely used due to its unique properties. One unique nano-scale characteristic of natural occurring collagen type I fibers is the so-called D-band periodicity, which has been associated with collagen natural structure and properties, while it seems to play a crucial role in the interactions between cells and collagen and in various pathological conditions. An accurate characterization of the surface and structure of collagen fibers, including D-band periodicity, on collagen-based tissues and/or (nano-)biomaterials can be achieved by Atomic Force Microscopy (AFM). AFM is a scanning probe microscope and is among the few techniques that can assess D-band periodicity. This review covers issues related to collagen and collagen D-band periodicity and the use of AFM for studying them. Through a systematic search in databases (PubMed and Scopus) relevant articles were identified. The study of these articles demonstrated that AFM can offer novel information concerning D-band periodicity. This study highlights the importance of studying collagen D-band periodicity and proves that AFM is a powerful tool for investigating a number of different properties related to collagen D-band periodicity.
胶原蛋白超家族包含五十多种胶原蛋白和/或类胶原蛋白,其中I型原纤维形成胶原蛋白是细胞外基质中含量最丰富的蛋白质。I型胶原蛋白在多种功能中发挥着关键作用,它与许多病理状况相关,并且因其独特的性质而被广泛应用。天然I型胶原纤维的一个独特的纳米级特征是所谓的D带周期性,它与胶原蛋白的天然结构和性质相关,同时似乎在细胞与胶原蛋白之间的相互作用以及各种病理状况中起着关键作用。通过原子力显微镜(AFM)可以准确表征基于胶原蛋白的组织和/或(纳米)生物材料上胶原纤维的表面和结构,包括D带周期性。AFM是一种扫描探针显微镜,是少数能够评估D带周期性的技术之一。本综述涵盖了与胶原蛋白和胶原D带周期性相关的问题以及使用AFM对它们进行研究的情况。通过在数据库(PubMed和Scopus)中进行系统检索,确定了相关文章。对这些文章的研究表明,AFM可以提供有关D带周期性的新信息。本研究强调了研究胶原D带周期性的重要性,并证明AFM是研究与胶原D带周期性相关的许多不同性质的有力工具。