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使用受激拉曼散射显微镜对秀丽隐杆线虫中脂质储存动态的无标记成像。

Label-Free Imaging of Lipid Storage Dynamics in Caenorhabditis elegans using Stimulated Raman Scattering Microscopy.

机构信息

Huffington Center on Aging, Baylor College of Medicine;

Huffington Center on Aging, Baylor College of Medicine.

出版信息

J Vis Exp. 2021 May 28(171). doi: 10.3791/61870.

Abstract

Lipid metabolism is a fundamental physiological process necessary for cellular and organism health. Dysregulation of lipid metabolism often elicits obesity and many associated diseases including cardiovascular disorders, type II diabetes, and cancer. To advance the current understanding of lipid metabolic regulation, quantitative methods to precisely measure in vivo lipid storage levels in time and space have become increasingly important and useful. Traditional approaches to analyze lipid storage are semi-quantitative for microscopic assessment or lacking spatio-temporal information for biochemical measurement. Stimulated Raman scattering (SRS) microscopy is a label-free chemical imaging technology that enables rapid and quantitative detection of lipids in live cells with a subcellular resolution. As the contrast is exploited from intrinsic molecular vibrations, SRS microscopy also permits four-dimensional tracking of lipids in live animals. In the last decade, SRS microscopy has been widely used for small molecule imaging in biomedical research and overcome the major limitations of conventional fluorescent staining and lipid extraction methods. In the laboratory, we have combined SRS microscopy with the genetic and biochemical tools available to the powerful model organism, Caenorhabditis elegans, to investigate the distribution and heterogeneity of lipid droplets across different cells and tissues and ultimately to discover novel conserved signaling pathways that modulate lipid metabolism. Here, we present the working principles and the detailed setup of the SRS microscope and provide methods for its use in quantifying lipid storage at distinct developmental timepoints of wild-type and insulin signaling deficient mutant C. elegans.

摘要

脂质代谢是细胞和机体健康所必需的基本生理过程。脂质代谢失调常常会引发肥胖和许多相关疾病,包括心血管疾病、二型糖尿病和癌症。为了深入了解脂质代谢的调控机制,定量方法来精确测量体内脂质储存水平的时间和空间变化变得越来越重要和有用。传统的分析脂质储存的方法对于微观评估是半定量的,或者对于生化测量缺乏时空信息。受激拉曼散射(SRS)显微镜是一种无标记的化学成像技术,能够以亚细胞分辨率快速定量检测活细胞中的脂质。由于对比是利用分子的固有振动来实现的,因此 SRS 显微镜还允许在活体动物中进行脂质的四维追踪。在过去的十年中,SRS 显微镜已广泛用于生物医学研究中的小分子成像,并克服了传统荧光染色和脂质提取方法的主要局限性。在实验室中,我们将 SRS 显微镜与遗传和生化工具相结合,应用于强大的模式生物秀丽隐杆线虫,以研究不同细胞和组织中脂滴的分布和异质性,并最终发现新的保守信号通路来调节脂质代谢。在这里,我们介绍了 SRS 显微镜的工作原理和详细设置,并提供了使用该显微镜在野生型和胰岛素信号缺陷突变型 C. elegans 的不同发育时间点定量测量脂质储存的方法。

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