Program in Neurosciences and Mental Health, Hospital for Sick Children , Toronto, Ontario M5G 1X8, Canada ; Institute of Medical Sciences, University of Toronto , Toronto, Ontario M5G 1X8, Canada ; Departments of Psychology and Physiology , University of Toronto , Toronto, Ontario M5G 1X8, Canada.
Department of Bioengineering and Psychiatry, Stanford University , Stanford, California 94305.
eNeuro. 2015 May 25;2(3). doi: 10.1523/ENEURO.0022-15.2015. eCollection 2015 May-Jun.
The development, refinement, and use of techniques that allow high-throughput imaging of whole brains with cellular resolution will help us understand the complex functions of the brain. Such techniques are crucial for the analysis of complete neuronal morphology-anatomical and functional-connectivity, and repeated molecular phenotyping. CLARITY is a recently introduced technique that produces structurally intact, yet optically transparent tissue, which may be labeled and imaged without sectioning. However, the utility of this technique depends on several procedural variables during the process in which the light-scattering lipids in a tissue are replaced by a transparent hydrogel matrix. Here, we systematically varied a number of factors (including temperature, hydrogel composition, and polymerization conditions) to provide an optimized, highly replicable CLARITY procedure for clearing mouse brains. We found that for these preparations optimal tissue clearing requires electrophoresis (and cannot be achieved with passive clearing alone) for 5 d with a combination of 37 and 55°C temperature. Although this protocol is optimized for brains, we also show that it can be used to clear and analyze a variety of organs. Brain or other tissue prepared using this protocol is suitable for high-throughput imaging with confocal or single-plane illumination microscopy.
开发、完善和运用高通量、细胞分辨率的全脑成像技术,将有助于我们理解大脑的复杂功能。这些技术对于分析完整的神经元形态(解剖和功能连接)以及重复的分子表型至关重要。CLARITY 是一种新引入的技术,可以生成结构完整但光学透明的组织,无需切片即可进行标记和成像。然而,该技术的实用性取决于组织中光散射脂质被透明水凝胶基质取代的过程中的几个程序变量。在这里,我们系统地改变了许多因素(包括温度、水凝胶组成和聚合条件),为清除小鼠大脑提供了一种优化的、高度可复制的 CLARITY 程序。我们发现,对于这些制剂,最佳的组织清除需要电泳(不能仅通过被动清除来实现),持续 5 天,温度组合为 37°C 和 55°C。虽然该方案是针对大脑优化的,但我们还表明它可用于清除和分析各种器官。使用该方案制备的脑组织或其他组织适合使用共聚焦或单平面照明显微镜进行高通量成像。