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可扩展的组织标记和完整人体器官的透明化。

Scalable tissue labeling and clearing of intact human organs.

机构信息

Institute for Tissue Engineering and Regenerative Medicine (iTERM), Helmholtz Center, Neuherberg, Munich, Germany.

Institute for Stroke and Dementia Research, University Hospital, Ludwig-Maximilians University Munich, Munich, Germany.

出版信息

Nat Protoc. 2022 Oct;17(10):2188-2215. doi: 10.1038/s41596-022-00712-8. Epub 2022 Jul 20.

Abstract

Advances in tissue labeling and clearing methods include improvement of tissue transparency, better preservation of fluorescence signal, compatibility with immunostaining and large sample volumes. However, as existing methods share the common limitation that they can only be applied to human tissue slices, rendering intact human organs transparent remains a challenge. Here, we describe experimental details of the small-micelle-mediated human organ efficient clearing and labeling (SHANEL) pipeline, which can be applied for cellular mapping of intact human organs. We have successfully cleared multiple human organs, including kidney, pancreas, heart, lung, spleen and brain, as well as hard tissue like skull. We also describe an advanced volumetric imaging system using a commercial light-sheet fluorescence microscope that can accommodate most human organs and a pipeline for whole-organ imaging and visualization. The complete experimental process of labeling and clearing whole human organs takes months and the analysis process takes several weeks, depending on the organ types and sizes.

摘要

组织标记和透明化方法的进展包括改善组织透明度、更好地保存荧光信号、与免疫染色兼容以及处理大样本量。然而,现有的方法都存在一个共同的局限性,即只能应用于人体组织切片,因此使完整的人体器官透明化仍然是一个挑战。在这里,我们描述了小分子介导的人体器官高效标记和透明化(SHANEL)方法的实验细节,该方法可用于完整人体器官的细胞图谱绘制。我们已经成功地对多个人体器官进行了透明化处理,包括肾脏、胰腺、心脏、肺、脾脏和大脑,以及硬组织如颅骨。我们还描述了一种使用商用片层荧光显微镜的先进体积成像系统,该系统可容纳大多数人体器官,以及用于整个器官成像和可视化的管道。标记和透明化整个人体器官的完整实验过程需要数月时间,而分析过程则需要数周时间,具体取决于器官类型和大小。

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