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Design and Construction of a Multi-wavelength Micromirror Total Internal Reflectance Fluorescence Microscope

机译:多波长微镜全内反射荧光显微镜的设计与构建

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摘要

Colocalization Single Molecule Spectroscopy (CoSMoS) has proven to be a useful method for studying the composition, kinetics, and mechanisms of complex cellular machines. Key to the technique is the ability to simultaneously monitor multiple proteins and/or nucleic acids as they interact with one another. Here we describe a protocol for constructing a CoSMoS micromirror Total Internal Reflection Fluorescence Microscope (mmTIRFM). Design and construction of a scientific microscope often requires a number of custom components and a significant time commitment. In our protocol, we have streamlined this process by implementation of a commercially available microscopy platform designed to accommodate the optical components necessary for a mmTIRFM. The mmTIRF system eliminates the need for machining custom parts by the end-user and facilitates optical alignment. Depending on the experience-level of the microscope builder, these time-savings and the following protocol can enable mmTIRF construction to be completed within two months.
机译:共定位单分子光谱法(CoSMoS)已被证明是研究复杂细胞机器的组成,动力学和机理的有用方法。该技术的关键是能够同时监视多种蛋白质和/或核酸彼此相互作用的能力。在这里,我们描述了用于构建CoSMoS微镜全内反射荧光显微镜(mmTIRFM)的协议。科学显微镜的设计和构造通常需要许多定制组件,并需要大量时间。在我们的协议中,我们通过实施商业显微镜平台来简化此过程,该平台旨在容纳mmTIRFM所需的光学组件。 mmTIRF系统消除了最终用户加工定制零件的需求,并有助于光学对准。根据显微镜制造商的经验水平,这些节省时间和遵循以下协议可以使mmTIRF的构建在两个月内完成。

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