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可扩展且可与 DiI 兼容的哺乳动物脑光学透明化方法。

Scalable and DiI-compatible optical clearance of the mammalian brain.

机构信息

Brainnetome Center, Institute of Automation, Chinese Academy of Sciences Beijing, China ; National Laboratory of Pattern Recognition, Institute of Automation, Chinese Academy of Sciences Beijing, China ; Beijing Institute of Radiation Medicine Beijing, China.

Brainnetome Center, Institute of Automation, Chinese Academy of Sciences Beijing, China.

出版信息

Front Neuroanat. 2015 Feb 24;9:19. doi: 10.3389/fnana.2015.00019. eCollection 2015.

Abstract

Efficient optical clearance is fundamental for whole brain imaging. In particular, clearance of the brain without membrane damage is required for the imaging of lipophilic tracer-labeled neural tracts. Relying on an ascending gradient of fructose solutions, SeeDB can achieve sufficient transparency of the mouse brain while ensuring that the plasma membrane remains intact. However, it is challenging to extend this method to larger mammalian brains due to the extremely high viscosity of the saturated fructose solution. Here we report a SeeDB-derived optical clearing method, termed FRUIT, which utilizes a cocktail of fructose and urea. As demonstrated in the adult mouse brain, combination of these two highly water-soluble clearing agents exerts a synergistic effect on clearance. More importantly, the final FRUIT solution has low viscosity so as to produce transparency of the whole adult rabbit brain via arterial perfusion, which is impossible to achieve with a saturated fructose solution. In addition to good compatibility with enhanced yellow fluorescent protein, the cocktail also preserves the fluorescence of the lipophilic tracer DiI. This work provides a volume-independent optical clearing method which retains the advantages of SeeDB, particularly compatibility with lipophilic tracers.

摘要

高效的光学透明化对于全脑成像至关重要。特别是,为了对亲脂性示踪剂标记的神经束进行成像,需要清除大脑而不破坏细胞膜。SeeDB 依赖于果糖溶液的上升梯度,可以在确保质膜完整的情况下实现小鼠大脑的充分透明化。然而,由于饱和果糖溶液的极高粘度,将该方法扩展到更大的哺乳动物大脑具有挑战性。在这里,我们报告了一种源自 SeeDB 的光学透明化方法,称为 FRUIT,它利用了果糖和尿素的混合物。如在成年小鼠大脑中所证明的,这两种高水溶性透明剂的组合对透明化具有协同作用。更重要的是,最终的 FRUIT 溶液具有低粘度,因此可以通过动脉灌注使整个成年兔脑透明化,而这是饱和果糖溶液无法实现的。除了与增强型黄色荧光蛋白良好兼容外,该混合物还可以保留亲脂性示踪剂 DiI 的荧光。这项工作提供了一种与体积无关的光学透明化方法,保留了 SeeDB 的优势,特别是与亲脂性示踪剂的兼容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a970/4338786/561f655c5130/fnana-09-00019-g0001.jpg

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