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Optical clearing potential of immersion-based agents applied to thick mouse brain sections

机译:浸没型药物应用于较厚的小鼠大脑切片的光学清除潜力

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摘要

We have previously demonstrated that the use of a commercially-available immersion-based optical clearing agent (OCA) enables, within 3–6 hours, three-dimensional visualization of subsurface exogenous fluorescent and absorbing markers of vascular architecture and neurodegenerative disease in thick (0.5–1.0mm) mouse brain sections. Nonetheless, the relative performance of immersion-based OCAs has remained unknown. Here, we show that immersion of brain sections in specific OCAs (FocusClear, RIMS, sRIMS, or ScaleSQ) affects both their transparency and volume; the optical clearing effect occurs over the entire visible spectrum and is reversible; and that ScaleSQ had the highest optical clearing potential and increase in imaging depth of the four evaluated OCAs, albeit with the largest change in sample volume and a concomitant decrease in apparent microvascular density of the sample. These results suggest a rational, quantitative framework for screening and characterization of the impact of optical clearing, to streamline experimental design and enable a cost-benefit assessment.
机译:我们以前已经证明,使用市售的基于浸入式的光学清除剂(OCA)可以在3-6小时内对皮下表面外源荧光和血管结构和神经退行性疾病的吸收标记物进行三维可视化(0.5 –1.0mm)老鼠的大脑切片。但是,基于沉浸式OCA的相对性能仍然未知。在这里,我们表明将大脑切片浸入特定的OCA(FocusClear,RIMS,sRIMS或ScaleSQ)中会影响其透明度和体积。光学清除效果会在整个可见光谱范围内发生,并且是可逆的;并且ScaleSQ具有最高的光学清除潜力,并且在四个评估的OCA中具有最大的成像深度,尽管样品量的变化最大,并且样品的表观微血管密度随之降低。这些结果为筛选和表征光学清除的影响提出了一个合理,定量的框架,以简化实验设计并进行成本效益评估。

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