Hirashima Tsuyoshi, Adachi Taiji
Institute for Frontier Medical Sciences, Kyoto University, Kyoto, Japan.
PLoS One. 2015 Aug 10;10(8):e0135343. doi: 10.1371/journal.pone.0135343. eCollection 2015.
Whole-tissue quantification at single-cell resolution has become an inevitable approach for further quantitative understanding of morphogenesis in organ development. The feasibility of the approach has been dramatically increased by recent technological improvements in optical tissue clearing and microscopy. However, the series of procedures required for this approach to lead to successful whole-tissue quantification is far from developed. To provide the appropriate procedure, we here show tips for each critical step of the entire process, including fixation for immunofluorescence, optical clearing, and digital image processing, using developing murine internal organs such as epididymis, kidney, and lung as an example. Through comparison of fixative solutions and of clearing methods, we found optimal conditions to achieve clearer deep-tissue imaging of specific immunolabeled targets and explain what methods result in vivid volume imaging. In addition, we demonstrated that three-dimensional digital image processing after optical clearing produces objective quantitative data for the whole-tissue analysis, focusing on the spatial distribution of mitotic cells in the epididymal tubule. The procedure for the whole-tissue quantification shown in this article should contribute to systematic measurements of cellular processes in developing organs, accelerating the further understanding of morphogenesis at the single cell level.
在单细胞分辨率下进行全组织定量分析,已成为进一步定量理解器官发育中形态发生的必然方法。光学组织透明化和显微镜技术的最新进展极大地提高了该方法的可行性。然而,要使这种方法成功实现全组织定量分析所需的一系列程序还远未完善。为了提供合适的程序,我们在此以发育中的小鼠内部器官(如附睾、肾脏和肺)为例,展示整个过程中每个关键步骤的技巧,包括免疫荧光固定、光学透明化和数字图像处理。通过比较固定液和透明化方法,我们找到了实现特定免疫标记靶点更清晰深层组织成像的最佳条件,并解释了哪些方法能产生生动的体积成像。此外,我们证明了光学透明化后的三维数字图像处理可为全组织分析提供客观的定量数据,重点是附睾管中有丝分裂细胞的空间分布。本文所示的全组织定量分析程序应有助于系统测量发育中器官的细胞过程,加速在单细胞水平上对形态发生的进一步理解。