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利用双光子荧光和受激拉曼散射显微镜对生物组织进行体内成像。

In vivo Imaging of Biological Tissues with Combined Two-Photon Fluorescence and Stimulated Raman Scattering Microscopy.

机构信息

Department of Electronic and Computer Engineering, The Hong Kong University of Science and Technology.

Department of Electronic and Computer Engineering, The Hong Kong University of Science and Technology; State Key Laboratory of Molecular Neuroscience, The Hong Kong University of Science and Technology; Center of Systems Biology and Human Health, The Hong Kong University of Science and Technology; Molecular Neuroscience Center, The Hong Kong University of Science and Technology.

出版信息

J Vis Exp. 2021 Dec 20(178). doi: 10.3791/63411.

Abstract

Stimulated Raman scattering (SRS) microscopy enables label-free imaging of the biological tissues in its natural microenvironment based on intrinsic molecular vibration, thus providing a perfect tool for in vivo study of biological processes at subcellular resolution. By integrating two-photon excited fluorescence (TPEF) imaging into the SRS microscope, the dual-modal in vivo imaging of tissues can acquire critical biochemical and biophysical information from multiple perspectives which helps understand the dynamic processes involved in cellular metabolism, immune response and tissue remodeling, etc. In this video protocol, the setup of a TPEF-SRS microscope system as well as the in vivo imaging method of the animal spinal cord is introduced. The spinal cord, as part of the central nervous system, plays a critical role in the communication between the brain and peripheral nervous system. Myelin sheath, abundant in phospholipids, surrounds and insulates the axon to permit saltatory conduction of action potentials. In vivo imaging of myelin sheaths in the spinal cord is important to study the progression of neurodegenerative diseases and spinal cord injury. The protocol also describes animal preparation and in vivo TPEF-SRS imaging methods to acquire high-resolution biological images.

摘要

受激拉曼散射(SRS)显微镜能够在其自然微环境中基于固有分子振动对生物组织进行无标记成像,从而为亚细胞分辨率下的生物过程的活体研究提供了完美的工具。通过将双光子激发荧光(TPEF)成像集成到 SRS 显微镜中,组织的双模活体成像可以从多个角度获取关键的生化和生物物理信息,有助于理解细胞代谢、免疫反应和组织重塑等涉及的动态过程。在这个视频方案中,介绍了 TPEF-SRS 显微镜系统的设置以及动物脊髓的活体成像方法。脊髓作为中枢神经系统的一部分,在大脑和外周神经系统之间的通信中起着关键作用。富含磷脂的髓鞘围绕并隔离轴突,以允许动作电位的跳跃传导。对脊髓中髓鞘的活体成像对于研究神经退行性疾病和脊髓损伤的进展非常重要。该方案还描述了动物准备和活体 TPEF-SRS 成像方法,以获取高分辨率的生物图像。

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