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经溶剂透明化处理的脑组织中狂犬病病毒感染的高分辨率三维成像

High-Resolution 3D Imaging of Rabies Virus Infection in Solvent-Cleared Brain Tissue.

作者信息

Zaeck Luca, Potratz Madlin, Freuling Conrad M, Müller Thomas, Finke Stefan

机构信息

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health.

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health;

出版信息

J Vis Exp. 2019 Apr 30(146). doi: 10.3791/59402.

Abstract

The visualization of infection processes in tissues and organs by immunolabeling is a key method in modern infection biology. The ability to observe and study the distribution, tropism, and abundance of pathogens inside of organ tissues provides pivotal data on disease development and progression. Using conventional microscopy methods, immunolabeling is mostly restricted to thin sections obtained from paraffin-embedded or frozen samples. However, the limited 2D image plane of these thin sections may lead to the loss of crucial information on the complex structure of an infected organ and the cellular context of the infection. Modern multicolor, immunostaining-compatible tissue clearing techniques now provide a relatively fast and inexpensive way to study high-volume 3D image stacks of virus-infected organ tissue. By exposing the tissue to organic solvents, it becomes optically transparent. This matches the sample's refractive indices and eventually leads to a significant reduction of light scattering. Thus, in combination with long free working distance objectives, large tissue sections up to 1 mm in size can be imaged by conventional confocal laser scanning microscopy (CLSM) at high resolution. Here, we describe a protocol to apply deep-tissue imaging after tissue clearing to visualize rabies virus distribution in infected brains in order to study topics like virus pathogenesis, spread, tropism, and neuroinvasion.

摘要

通过免疫标记来可视化组织和器官中的感染过程是现代感染生物学中的关键方法。观察和研究病原体在器官组织内的分布、嗜性和丰度的能力为疾病的发展和进程提供了关键数据。使用传统显微镜方法,免疫标记大多局限于从石蜡包埋或冷冻样本中获得的薄片。然而,这些薄片有限的二维图像平面可能会导致丢失关于受感染器官复杂结构和感染细胞背景的关键信息。现代多色、与免疫染色兼容的组织透明化技术现在提供了一种相对快速且廉价的方法来研究病毒感染器官组织的高容量三维图像堆栈。通过将组织暴露于有机溶剂中,它会变得光学透明。这与样本的折射率相匹配,并最终导致光散射显著减少。因此,结合长工作距离物镜,尺寸达1毫米的大型组织切片可以通过传统的共聚焦激光扫描显微镜(CLSM)进行高分辨率成像。在这里,我们描述了一种在组织透明化后应用深度组织成像来可视化狂犬病病毒在受感染大脑中的分布的方案,以便研究病毒发病机制传播、嗜性和神经侵袭等主题。

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