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光学微悬臂辅助 DNA 拉伸。

Optical microlever assisted DNA stretching.

出版信息

Opt Express. 2021 Aug 2;29(16):25836-25847. doi: 10.1364/OE.430465.

Abstract

Optical microrobotics is an emerging field that has the potential to improve upon current optical tweezer studies through avenues such as limiting the exposure of biological molecules of interest to laser radiation and overcoming the current limitations of low forces and unwanted interactions between nearby optical traps. However, optical microrobotics has been historically limited to rigid, single-body end-effectors rather than even simple machines, limiting the tasks that can be performed. Additionally, while multi-body machines such as microlevers exist in the literature, they have not yet been successfully demonstrated as tools for biological studies, such as molecule stretching. In this work we have taken a step towards moving the field forward by developing two types of microlever, produced using two-photon absorption polymerisation, to perform the first lever-assisted stretches of double-stranded DNA. The aim of the work is to provide a proof of concept for using optical micromachines for single molecule studies. Both styles of microlevers were successfully used to stretch single duplexes of DNA, and the results were analysed with the worm-like chain model to show that they were in good agreement.

摘要

光镊微机器人技术是一个新兴领域,通过限制感兴趣的生物分子暴露于激光辐射和克服当前低力和附近光阱之间不必要相互作用的限制等途径,有可能改进当前的光镊研究。然而,光镊微机器人技术在历史上仅限于刚性的单一体效应器,而不是简单的机器,限制了可以执行的任务。此外,尽管文献中存在诸如微杠杆之类的多体机器,但它们尚未成功地作为生物研究工具(例如分子拉伸)得到证明。在这项工作中,我们通过使用双光子吸收聚合来开发两种类型的微杠杆,朝着推动该领域向前发展迈出了一步,从而首次进行了双链 DNA 的杠杆辅助拉伸。这项工作的目的是提供使用光学微机器进行单分子研究的概念验证。两种风格的微杠杆都成功地用于拉伸单个双链 DNA,并且使用蠕虫状链模型对结果进行了分析,表明它们非常吻合。

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