Woo Jiwon, Lee Eunice Yoojin, Lee Mirae, Ku Seockmo, Park Jeong-Yoon, Cho Yong Eun
Department of Neurosurgery, Graduate School of Medical Science, Brain Korea 21 Project, Yonsei University College of Medicine, Seoul, South Korea.
The Spine and Spinal Cord Institute, Department of Neurosurgery, Gangnam Severance Hospital, Yonsei University College of Medicine, Seoul, South Korea.
Front Bioeng Biotechnol. 2022 Jan 28;9:784626. doi: 10.3389/fbioe.2021.784626. eCollection 2021.
The advent of tissue clearing methods, in conjunction with novel high-resolution imaging techniques, has enabled the visualization of three-dimensional structures with unprecedented depth and detail. Although a variety of clearing protocols have been developed, little has been done to quantify their efficacies in a systematic, reproducible fashion. Here, we present two simple assays, Punching-Assisted Clarity Analysis (PACA)-Light and PACA-Glow, which use easily accessible spectroscopy and gel documentation systems to quantify the transparency of multiple cleared tissues simultaneously. We demonstrate the use of PACA-Light and PACA-Glow to compare twenty-eight tissue clearing protocols on rodent brains. We also show that regional differences exist in tissue transparency in the rodent brain, with cerebellar tissue consistently achieving lower clearing levels compared to the prefrontal or cerebral cortex across all protocols. This represents the largest comparative study of tissue clearing protocols to date, made possible by the high-throughput nature of our PACA platforms.
组织透明化方法与新型高分辨率成像技术的出现,使得人们能够以前所未有的深度和细节可视化三维结构。尽管已经开发出了多种透明化方案,但在以系统、可重复的方式量化它们的效果方面却做得很少。在此,我们介绍两种简单的检测方法,打孔辅助透明度分析(PACA)-光检测法和PACA-发光检测法,它们使用易于获取的光谱学和凝胶成像系统来同时量化多个透明化组织的透明度。我们展示了使用PACA-光检测法和PACA-发光检测法来比较28种针对啮齿动物大脑的组织透明化方案。我们还表明,啮齿动物大脑的组织透明度存在区域差异,在所有方案中,小脑组织的透明化水平始终低于前额叶或大脑皮层。这是迄今为止最大规模的组织透明化方案比较研究,得益于我们PACA平台的高通量特性才得以实现。