Schwarz Martin K, Scherbarth Annemarie, Sprengel Rolf, Engelhardt Johann, Theer Patrick, Giese Guenter
Max Planck Institute for Medical Research, Heidelberg, Germany.
German Cancer Research Center (DKFZ), Heidelberg, Germany.
PLoS One. 2015 May 20;10(5):e0124650. doi: 10.1371/journal.pone.0124650. eCollection 2015.
In order to observe and quantify long-range neuronal connections in intact mouse brain by light microscopy, it is first necessary to clear the brain, thus suppressing refractive-index variations. Here we describe a method that clears the brain and preserves the signal from proteinaceous fluorophores using a pH-adjusted non-aqueous index-matching medium. Successful clearing is enabled through the use of either 1-propanol or tert-butanol during dehydration whilst maintaining a basic pH. We show that high-resolution fluorescence imaging of entire, structurally intact juvenile and adult mouse brains is possible at subcellular resolution, even following many months in clearing solution. We also show that axonal long-range projections that are EGFP-labelled by modified Rabies virus can be imaged throughout the brain using a purpose-built light-sheet fluorescence microscope. To demonstrate the viability of the technique, we determined a detailed map of the monosynaptic projections onto a target cell population in the lateral entorhinal cortex. This example demonstrates that our method permits the quantification of whole-brain connectivity patterns at the subcellular level in the uncut brain.
为了通过光学显微镜观察和量化完整小鼠大脑中的长程神经元连接,首先需要对大脑进行透明处理,从而抑制折射率变化。在此,我们描述一种方法,该方法使用pH值调整后的非水折射率匹配介质对大脑进行透明处理并保留蛋白质荧光团的信号。在脱水过程中使用1-丙醇或叔丁醇并保持碱性pH值,从而实现成功的透明处理。我们表明,即使在透明溶液中放置数月后,仍可以在亚细胞分辨率下对整个结构完整的幼年和成年小鼠大脑进行高分辨率荧光成像。我们还表明,使用特制的光片荧光显微镜可以对经改良狂犬病病毒进行EGFP标记的轴突长程投射在整个大脑中进行成像。为了证明该技术的可行性,我们确定了向外侧内嗅皮层中目标细胞群体的单突触投射的详细图谱。这个例子表明,我们的方法允许在未切割的大脑中在亚细胞水平上量化全脑连接模式。