State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, Shenyang 110016, China.
School of Medical Device, Shenyang Pharmaceutical University, Shenyang 110016, China.
Sensors (Basel). 2017 Jan 22;17(1):200. doi: 10.3390/s17010200.
The advent of atomic force microscopy (AFM) has provided a powerful tool for investigating the behaviors of single native biological molecules under physiological conditions. AFM can not only image the conformational changes of single biological molecules at work with sub-nanometer resolution, but also sense the specific interactions of individual molecular pair with piconewton force sensitivity. In the past decade, the performance of AFM has been greatly improved, which makes it widely used in biology to address diverse biomedical issues. Characterizing the behaviors of single molecules by AFM provides considerable novel insights into the underlying mechanisms guiding life activities, contributing much to cell and molecular biology. In this article, we review the recent developments of AFM studies in single-molecule assay. The related techniques involved in AFM single-molecule assay were firstly presented, and then the progress in several aspects (including molecular imaging, molecular mechanics, molecular recognition, and molecular activities on cell surface) was summarized. The challenges and future directions were also discussed.
原子力显微镜(AFM)的出现为研究生理条件下单个天然生物分子的行为提供了强大的工具。AFM 不仅可以以亚纳米分辨率成像工作中单生物分子的构象变化,还可以以皮牛顿力灵敏度感应单个分子对的特定相互作用。在过去的十年中,AFM 的性能得到了极大的提高,使其在生物学中得到了广泛的应用,解决了各种生物医学问题。通过 AFM 对单分子行为的表征,为指导生命活动的潜在机制提供了相当多的新见解,为细胞和分子生物学做出了重要贡献。本文综述了 AFM 在单分子检测中的最新研究进展。首先介绍了 AFM 单分子检测中涉及的相关技术,然后总结了几个方面的进展(包括分子成像、分子力学、分子识别和细胞表面上的分子活性)。还讨论了挑战和未来方向。