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Atomic force microscopy-based force spectroscopy u biological and biomedical applications

机译:基于原子力显微镜的力谱在生物和生物医学中的应用

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摘要

The use of atomic force microscopy (AFM) applied to biological systems to generate high resolution images is gaining a wider acceptance. However, the most remarkable advances are being achieved on the use of the AFM to measure inter- and intramolecular interaction forces with piconewton resolution, not only to demonstrate this ability but also actually to solve biological and biomedical relevant questions. Single-molecule force spectroscopy recognition studies enable the detection of specific interaction forces, based on the AFM sensitivity and the possibility of manipulating individual molecules. In this review, we describe the basic principles of this methodology and some of the practical aspects involved. The ability to measure interactions at the single-molecule level is illustrated by some relevant examples. A special focus is given to the study of the fibrinogenerythrocyte binding and its relevance as a cardiovascular risk factor. An approach to the latter problem by single-molecule force spectroscopy allowed the molecular recognition, characterization, and partial identification of a previously unknown receptor for fibrinogen on human erythrocytes. (C) 2012 IUBMB IUBMB Life, 2012
机译:应用于生物系统以生成高分辨率图像的原子力显微镜(AFM)的使用正在获得越来越广泛的接受。然而,使用原子力显微镜以皮克顿分辨率测量分子间和分子间相互作用力已取得了最显着的进展,不仅证明了这种能力,而且实际上解决了生物学和生物医学相关的问题。基于AFM灵敏度和操纵单个分子的可能性,单分子力光谱识别研究可以检测特定的相互作用力。在这篇评论中,我们描述了这种方法的基本原理以及所涉及的一些实际方面。一些相关示例说明了在单分子水平上测量相互作用的能力。特别关注纤维蛋白原红细胞结合及其作为心血管危险因素的相关性的研究。通过单分子力光谱法解决后一个问题的方法允许分子识别,表征和部分鉴定人红细胞上纤维蛋白原的先前未知的受体。 (C)2012 IUBMB IUBMB人寿,2012年

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