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Optimization of GFP Fluorescence Preservation by a Modified uDISCO Clearing Protocol

机译:改进的uDISCO清除协议优化GFP荧光保存

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摘要

Tissue optical clearing techniques provide alternative approaches for imaging large-volume specimens. uDISCO, an organic-solvent-based method, stands out from the enormous array of available optical clearing methods by achieving whole-brain imaging with high transparency, size reduction and fluorescence preservation. In this study, we aimed to modify the uDISCO protocol to achieve better fluorescence preservation and to thereby further improve its optical imaging quality. First, we determined the optimal pH value for optimized uDISCO, termed “a-uDISCO” (alkaline pH-based uDISCO). Then, we compared fluorescence preservation between a-uDISCO and uDISCO. In addition, we validated the clearing performance of the optimized method according to several parameters, including tissue transparency, size changes, and the maintenance of cell morphology. Finally, we demonstrated that a-uDISCO enabled the high-quality brain-wide visualization of neuronal structures. This method potentially provides a better alternative for high-throughput imaging of samples with low-level fluorescence protein expression or for archiving and repetitive revisiting of rare samples.
机译:组织光学清除技术为大体积标本成像提供了替代方法。 uDISCO是一种基于有机溶剂的方法,它通过实现具有高透明度,尺寸减小和荧光保留的全脑成像,在众多可用的光学清除方法中脱颖而出。在这项研究中,我们旨在修改uDISCO协议以实现更好的荧光保存,从而进一步提高其光学成像质量。首先,我们确定了优化的uDISCO的最佳pH值,称为“ a-uDISCO”(基于碱性pH的uDISCO)。然后,我们比较了a-uDISCO和uDISCO之间的荧光保存。另外,我们根据几个参数验证了优化方法的清除性能,这些参数包括组织透明性,大小变化和细胞形态的维持。最后,我们证明了a-uDISCO可以实现全神经元结构的全脑可视化。此方法可能为具有低水平荧光蛋白表达的样品进行高通量成像或为稀有样品进行归档和重复访问提供更好的选择。

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