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Chemical Principles in Tissue Clearing and Staining Protocols for Whole-Body Cell Profiling
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2016-10-06 00:00:00 , DOI: 10.1146/annurev-cellbio-111315-125001
Kazuki Tainaka 1 , Akihiro Kuno 2, 3 , Shimpei I. Kubota 1 , Tatzya Murakami 1 , Hiroki R. Ueda 1, 4
Affiliation  

Mammalian bodies have more than a billion cells per cubic centimeter, which makes whole-body cell (WBC) profiling of an organism one of the ultimate challenges in biology and medicine. Recent advances in tissue-clearing technology have enabled rapid and comprehensive cellular analyses in whole organs and in the whole body by a combination of state-of-the-art technologies of optical imaging and image informatics. In this review, we focus mainly on the chemical principles in currently available techniques for tissue clearing and staining to facilitate our understanding of their underlying mechanisms. Tissue clearing is usually conducted by the following steps: (a) fixation, (b) permeabilization, (c) decolorizing, and (d) refractive index (RI) matching. To phenotype individual cells after tissue clearing, it is important to visualize genetically encoded fluorescent reporters and/or to stain tissues with fluorescent dyes, fluorescent labeled antibodies, or nucleic acid probes. Although some technical challenges remain, the chemical principles in tissue clearing and staining for WBC profiling will enable various applications, such as identifying cellular circuits across multiple organs and measuring their dynamics in stochastic and proliferative cellular processes, for example, autoimmune and malignant neoplastic diseases.

中文翻译:


用于全身细胞分析的组织清除和染色方案中的化学原理

哺乳动物的身体每立方厘米有超过十亿个细胞,这使生物体的全身细胞(WBC)轮廓分析成为生物学和医学领域的终极挑战之一。组织清除技术的最新进展通过结合光学成像和图像信息学的最新技术,可以对整个器官和整个身体进行快速而全面的细胞分析。在这篇综述中,我们主要关注组织清除和染色的当前可用技术中的化学原理,以促进我们对其潜在机制的理解。组织清除通常通过以下步骤进行:(a)固定,(b)透化,(c)脱色,和(d)折射率(RI)匹配。为了在组织清除后对单个细胞进行表型化,重要的是可视化遗传编码的荧光报告分子和/或用荧光染料,荧光标记的抗体或核酸探针对组织进行染色。尽管仍然存在一些技术挑战,但用于WBC轮廓分析的组织清除和染色化学原理将使各种应用成为可能,例如识别跨多个器官的细胞回路并测量其在随机和增生细胞过程(例如自身免疫性和恶性肿瘤性疾病)中的动态。

更新日期:2016-10-06
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