Department of Systems Pharmacology, University of Tokyo, Tokyo, Japan.
Laboratory for Synthetic Biology, RIKEN BDR, Suita, Japan.
Nat Rev Neurosci. 2020 Feb;21(2):61-79. doi: 10.1038/s41583-019-0250-1.
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues from individual organs and even to some entire mammals. When combined with light-sheet microscopy and automated approaches to image analysis, existing tissue-clearing methods can speed up and may reduce the cost of conventional histology by several orders of magnitude. In addition, tissue-clearing chemistry allows whole-organ antibody labelling, which can be applied even to thick human tissues. By combining the most powerful labelling, clearing, imaging and data-analysis tools, scientists are extracting structural and functional cellular and subcellular information on complex mammalian bodies and large human specimens at an accelerated pace. The rapid generation of terabyte-scale imaging data furthermore creates a high demand for efficient computational approaches that tackle challenges in large-scale data analysis and management. In this Review, we discuss how tissue-clearing methods could provide an unbiased, system-level view of mammalian bodies and human specimens and discuss future opportunities for the use of these methods in human neuroscience.
最先进的组织通透方法为完整器官甚至某些整个哺乳动物提供了亚细胞水平的光学通道。当与光片显微镜和自动化图像分析方法结合使用时,现有的组织通透方法可以将传统组织学的速度提高几个数量级,并可能降低成本。此外,组织通透化学允许整个器官的抗体标记,即使对于厚的人体组织也可以应用。通过结合最强大的标记、通透、成像和数据分析工具,科学家们正在加速提取复杂的哺乳动物体和大型人体标本的结构和功能细胞及亚细胞信息。TB 级成像数据的快速生成进一步对高效计算方法提出了很高的需求,这些方法需要解决大规模数据分析和管理方面的挑战。在这篇综述中,我们讨论了组织通透方法如何为哺乳动物体和人体标本提供无偏、系统水平的观察,并讨论了这些方法在人类神经科学中的未来应用机会。