Chemistry Department, Louisiana State University, 232 Choppin Hall, Baton Rouge, Los Angeles 70803.
Biointerphases. 2024 Sep 1;19(5). doi: 10.1116/6.0003789.
Extracellular matrix (ECM) proteins provide anchorage and structural strength to cells and tissues in the body and, thus, are fundamental molecular components for processes of cell proliferation, growth, and function. Atomic force microscopy (AFM) has increasingly become a valuable approach for studying biological molecules such as ECM proteins at the level of individual molecules. Operational modes of AFM can be used to acquire the measurements of the physical, electronic, and mechanical properties of samples, as well as for viewing the intricate details of the surface chemistry of samples. Investigations of the morphology and properties of biomolecules at the nanoscale can be useful for understanding the interactions between ECM proteins and biological molecules such as cells, DNA, and other proteins. Methods for preparing protein samples for AFM studies require only basic steps, such as the immersion of a substrate in a dilute solution or protein, or the deposition of liquid droplets of protein suspensions on a flat, clean surface. Protocols of nanolithography have been used to define the arrangement of proteins for AFM studies. Using AFM, mechanical and force measurements with tips that are coated with ECM proteins can be captured in ambient or aqueous environments. In this review, representative examples of AFM studies are described for molecular-level investigations of the structure, surface assembly, protein-cell interactions, and mechanical properties of ECM proteins (collagen, elastin, fibronectin, and laminin). Methods used for sample preparation as well as characterization with modes of AFM will be discussed.
细胞外基质(ECM)蛋白为体内的细胞和组织提供附着点和结构强度,因此是细胞增殖、生长和功能过程的基本分子组成部分。原子力显微镜(AFM)越来越成为研究 ECM 蛋白等生物分子的一种有价值的方法,可以在单个分子水平上进行研究。AFM 的操作模式可用于获取样品物理、电子和机械性能的测量值,以及用于观察样品表面化学的复杂细节。在纳米尺度上研究生物分子的形态和特性有助于理解 ECM 蛋白与细胞、DNA 和其他蛋白质等生物分子之间的相互作用。用于 AFM 研究的蛋白质样品制备方法仅需要基本步骤,例如将底物浸入稀释溶液或蛋白质中,或将蛋白质悬浮液的液滴滴在平坦、清洁的表面上。纳米光刻技术已被用于定义 AFM 研究中蛋白质的排列方式。使用 AFM,可以在环境或水相环境中捕获用 ECM 蛋白涂覆的探针的机械和力测量值。在这篇综述中,描述了 AFM 研究的代表性实例,用于研究 ECM 蛋白(胶原、弹性蛋白、纤维连接蛋白和层粘连蛋白)的结构、表面组装、蛋白-细胞相互作用和机械性能的分子水平研究。将讨论用于样品制备和 AFM 模式表征的方法。