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利用双光镊和微流控技术进行单分子研究。

Use of Dual Optical Tweezers and Microfluidics for Single-Molecule Studies.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Nebraska Medical Center;

出版信息

J Vis Exp. 2022 Nov 18(189). doi: 10.3791/64023.

Abstract

Visual biochemistry is a powerful technique for observing the stochastic properties of single enzymes or enzyme complexes that are obscured in the averaging that takes place in bulk-phase studies. To achieve visualization, dual optical tweezers, where one trap is fixed and the other is mobile, are focused into one channel of a multi-stream microfluidic chamber positioned on the stage of an inverted fluorescence microscope. The optical tweezers trap single molecules of fluorescently labeled DNA and fluid flow through the chamber and past the trapped beads, stretches the DNA to B-form (under minimal force, i.e., 0 pN) with the nucleic acid being observed as a white string against a black background. DNA molecules are moved from one stream to the next, by translating the stage perpendicular to the flow to enable the initiation of reactions in a controlled manner. To achieve success, microfluidic devices with optically clear channels are mated to glass syringes held in place in a syringe pump. Optimal results use connectors permanently bonded to the flow cell, tubing that is mechanically rigid and chemically resistant, and which is connected to switching valves that eliminate bubbles that prohibit laminar flow.

摘要

可见生化是一种强大的技术,可以观察到在批量研究中平均化所掩盖的单个酶或酶复合物的随机性质。为了实现可视化,双光镊,其中一个陷阱是固定的,另一个是移动的,被聚焦到一个多流微流控室的一个通道中,该通道位于倒置荧光显微镜的台上。光镊捕获荧光标记的 DNA 单分子,并且流体流过腔室并经过捕获的珠子,将 DNA 拉伸到 B 型(在最小的力下,即 0 pN),观察到的核酸作为白色字符串对照黑色背景。通过垂直于流动的方向平移台,将 DNA 分子从一个流道移动到另一个流道,从而以受控的方式启动反应。为了获得成功,将具有光学透明通道的微流控装置与玻璃注射器配合使用,玻璃注射器固定在注射器泵中。最佳结果使用永久粘合到流池的连接器、机械刚性和化学抗性的管材,以及连接到开关阀,以消除阻止层流的气泡。

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