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应用于脂质生物学的非线性振动显微镜。

Nonlinear vibrational microscopy applied to lipid biology.

机构信息

Department of Chemistry, University of Konstanz, 78457 Konstanz, Germany.

出版信息

Prog Lipid Res. 2013 Oct;52(4):615-32. doi: 10.1016/j.plipres.2013.07.003. Epub 2013 Sep 16.

Abstract

Optical microscopy is an indispensable tool that is driving progress in cell biology. It still is the only practical means of obtaining spatial and temporal resolution within living cells and tissues. Most prominently, fluorescence microscopy based on dye-labeling or protein fusions with fluorescent tags is a highly sensitive and specific method of visualizing biomolecules within sub-cellular structures. It is however severely limited by labeling artifacts, photo-bleaching and cytotoxicity of the labels. Coherent Raman Scattering (CRS) has emerged in the last decade as a new multiphoton microscopy technique suited for imaging unlabeled living cells in real time with high three-dimensional spatial resolution and chemical specificity. This technique has proven to be particularly successful in imaging unstained lipids from artificial membrane model systems, to living cells and tissues to whole organisms. In this article, we will review the experimental implementations of CRS microscopy and their application to imaging lipids. We will cover the theoretical background of linear and non-linear vibrational micro-spectroscopy necessary for the understanding of CRS microscopy. The different experimental implementations of CRS will be compared in terms of sensitivity limits and excitation and detection methods. Finally, we will provide an overview of the applications of CRS microscopy to lipid biology.

摘要

光学显微镜是推动细胞生物学发展不可或缺的工具。它仍然是在活细胞和组织中获得空间和时间分辨率的唯一实用方法。最突出的是,基于染料标记或与荧光标签融合的蛋白质的荧光显微镜是在亚细胞结构中可视化生物分子的一种高度敏感和特异的方法。然而,它受到标记伪影、光漂白和标签细胞毒性的严重限制。相干拉曼散射(CRS)在过去十年中作为一种新的多光子显微镜技术出现,适合实时对未标记的活细胞进行高三维空间分辨率和化学特异性成像。该技术已被证明在对人工膜模型系统、活细胞和组织以及整个生物体中的未染色脂质进行成像方面特别成功。在本文中,我们将回顾 CRS 显微镜的实验实现及其在脂质成像中的应用。我们将涵盖线性和非线性振动微光谱学的理论背景,这对于理解 CRS 显微镜是必要的。将比较 CRS 的不同实验实现,以比较其灵敏度限制以及激发和检测方法。最后,我们将概述 CRS 显微镜在脂质生物学中的应用。

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