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一种简单的光学组织透明化处理流水线,用于对小鼠纵隔器官的 3D 血管成像。

A simple optical tissue clearing pipeline for 3D vasculature imaging of the mediastinal organs in mice.

机构信息

Department of Thoracic Surgery, Tongji Medical College, Union Hospital, Huazhong University of Science and Technology, Wuhan, China.

Medical Research Center, Medical Faculty Mannheim, University of Heidelberg, Mannheim, Germany.

出版信息

Int J Exp Pathol. 2021 Aug;102(4-5):218-227. doi: 10.1111/iep.12399. Epub 2021 Oct 6.

Abstract

Optical tissue clearing (OTC) methods render tissue transparent by matching the refractive index within a sample to enable three-dimensional (3D) imaging with advanced microscopes. The application of OTC method in mediastinal organs in mice remains poorly understand. Our aim was to establish a simple protocol pipeline for 3D imaging of the mediastinal organs in mice. Trachea, oesophagus, thymus and heart were harvested from mice after retrograde perfusion via the abdominal aorta. We combined and optimized antibody labelling of thick tissue samples, OTC with cheap and non-toxic solvent ethyl cinnamate (ECi), and light-sheet fluorescence microscopy (LSFM) or laser confocal fluorescence microscopy (LCFM) to visualize the vasculature of those tissues. A high degree of optical transparency of trachea, oesophagus, thymus and heart was achieved after ECi-based OTC. With anti-CD31 antibody immunofluorescence labelling before ECi-based OTC, the vasculature of these tissues with their natural morphology, location and organizational network was imaged using LSFM or LCFM. This simple protocol pipeline provides an easy-to-setup and comprehensive way to study the vasculature of mediastinal organs in 3D without any special equipment. We anticipate that it will facilitate diverse applications in biomedical research of thoracic diseases and even other organs.

摘要

光学组织透明化 (OTC) 方法通过匹配样品内的折射率来使组织透明,从而能够使用先进的显微镜进行三维 (3D) 成像。OTC 方法在小鼠纵隔器官中的应用仍知之甚少。我们的目的是建立一种简单的方案流程,用于对小鼠纵隔器官进行 3D 成像。通过腹主动脉逆行灌注,从小鼠中收获气管、食管、胸腺和心脏。我们结合并优化了厚组织样本的抗体标记、OTC 与廉价无毒溶剂肉桂酸乙酯 (ECi) 的结合、以及光片荧光显微镜 (LSFM) 或激光共聚焦荧光显微镜 (LCFM),以可视化这些组织的脉管系统。在基于 ECi 的 OTC 之后,气管、食管、胸腺和心脏达到了高度的光学透明度。在用基于 ECi 的 OTC 之前用抗 CD31 抗体免疫荧光标记,使用 LSFM 或 LCFM 可以对这些组织的脉管系统及其自然形态、位置和组织网络进行成像。该简单方案流程提供了一种易于设置且全面的方法,可用于在没有任何特殊设备的情况下在 3D 中研究纵隔器官的脉管系统。我们预计,它将促进胸科疾病甚至其他器官的生物医学研究中的多种应用。

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