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A new versatile clearing method for brain imaging

机译:一种用于脑成像的新型通用清除方法

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Light scattering inside biological tissue is a limitation for large volumes imaging with microscopic resolution. Based on refractive index matching, different approaches have been developed to reduce scattering in fixed tissue. High refractive index organic solvents and water-based optical clearing agents, such as Sca/e, SeeDB and CUBIC have been used for optical clearing of entire mouse brain. Although these methods guarantee high transparency and preservation of the fluorescence, though present other non-negligible limitations. Tissue transformation by CLARITY allows high transparency, whole brain immunolabelling and structural and molecular preservation. This method however requires a highly expensive refractive index matching solution limiting practical applicability to large volumes. In this work we investigate the effectiveness of a water-soluble clearing agent, the 2,2'-thiodiethanol (TDE) to clear mouse and human brain. TDE does not quench the fluorescence signal, is compatible with immunostaining and does not introduce any deformation at sub-cellular level. The not viscous nature of the TDE make it a suitable agent to perform brain slicing during serial two-photon (STP) tomography. In fact, by improving penetration depth it reduces tissue slicing, decreasing the acquisition time and cutting artefacts. TDE can also be used as a refractive index medium for CLARITY. The potential of this method has been explored by imaging blocks of dysplastic human brain transformed with CLARITY, immunostained and cleared with the TDE. This clearing approach significantly expands the application of single and two-photon imaging, providing a new useful method for quantitative morphological analysis of structure in mouse and human brain.
机译:生物组织内部的光散射是显微分辨率大体积成像的局限性。基于折射率匹配,已开发出不同的方法来减少固定组织中的散射。高折射率有机溶剂和水基光学清除剂(例如Sca / e,SeeDB和CUBIC)已用于整个小鼠大脑的光学清除。尽管这些方法保证了高透明性和荧光的保存,但是存在其他不可忽略的局限性。通过CLARITY进行的组织转化可实现高透明度,全脑免疫标记以及结构和分子保存。然而,该方法需要非常昂贵的折射率匹配解决方案,从而限制了大体积的实际适用性。在这项工作中,我们研究了水溶性清洁剂2,2'-硫代二乙醇(TDE)清除小鼠和人脑的有效性。 TDE不会淬灭荧光信号,与免疫染色兼容,并且在亚细胞水平上不会引起任何变形。 TDE的非粘性性质使其成为在连续双光子(STP)层析成像期间执行脑切片的合适试剂。实际上,通过提高穿透深度,可以减少组织切片,减少采集时间并减少人工制品。 TDE也可以用作CLARITY的折射率介质。通过对用CLARITY转化,免疫染色并用TDE清除的发育不良的人脑进行成像,探索了该方法的潜力。这种清除方法极大地扩展了单光子和双光子成像的应用,为定量定量分析小鼠和人脑结构的形态学提供了一种新的有用方法。

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