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用于关联光/电子显微镜的低成本低温光学显微镜载物台制造

Low-cost cryo-light microscopy stage fabrication for correlated light/electron microscopy.

作者信息

Carlson David B, Evans James E

机构信息

Department of Molecular and Cellular Biology, University of California Davis, USA.

出版信息

J Vis Exp. 2011 Jun 5(52):2909. doi: 10.3791/2909.

Abstract

The coupling of cryo-light microscopy (cryo-LM) and cryo-electron microscopy (cryo-EM) poses a number of advantages for understanding cellular dynamics and ultrastructure. First, cells can be imaged in a near native environment for both techniques. Second, due to the vitrification process, samples are preserved by rapid physical immobilization rather than slow chemical fixation. Third, imaging the same sample with both cryo-LM and cryo-EM provides correlation of data from a single cell, rather than a comparison of "representative samples". While these benefits are well known from prior studies, the widespread use of correlative cryo-LM and cryo-EM remains limited due to the expense and complexity of buying or building a suitable cryogenic light microscopy stage. Here we demonstrate the assembly, and use of an inexpensive cryogenic stage that can be fabricated in any lab for less than $40 with parts found at local hardware and grocery stores. This cryo-LM stage is designed for use with reflected light microscopes that are fitted with long working distance air objectives. For correlative cryo-LM and cryo-EM studies, we adapt the use of carbon coated standard 3-mm cryo-EM grids as specimen supports. After adsorbing the sample to the grid, previously established protocols for vitrifying the sample and transferring/handling the grid are followed to permit multi-technique imaging. As a result, this setup allows any laboratory with a reflected light microscope to have access to direct correlative imaging of frozen hydrated samples.

摘要

低温光学显微镜(cryo-LM)与低温电子显微镜(cryo-EM)的联用在理解细胞动力学和超微结构方面具有诸多优势。首先,两种技术都能在近乎天然的环境中对细胞进行成像。其次,由于玻璃化过程,样品是通过快速物理固定而非缓慢化学固定来保存的。第三,使用cryo-LM和cryo-EM对同一样品进行成像可提供来自单个细胞的数据相关性,而非“代表性样品”的比较。虽然这些优势在先前的研究中已广为人知,但由于购买或构建合适的低温光学显微镜载物台成本高昂且操作复杂,cryo-LM和cryo-EM联用的广泛应用仍然受限。在此,我们展示了一种价格低廉的低温载物台的组装及使用方法,该载物台在任何实验室都能用不到40美元的成本制作,所需部件可在当地五金店和杂货店买到。这个cryo-LM载物台专为与配备长工作距离空气物镜的反射光显微镜配合使用而设计。对于cryo-LM和cryo-EM的相关研究,我们采用涂有碳膜的标准3毫米cryo-EM网格作为样品支撑。在将样品吸附到网格上后,遵循先前建立的使样品玻璃化以及转移/处理网格的方案,以实现多技术成像。因此,这种设置使任何拥有反射光显微镜的实验室都能够对冷冻水合样品进行直接相关成像。

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