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Validation of an easily applicable three-dimensional immunohistochemical imaging method for a mouse brain using conventional confocal microscopy

机译:使用常规共聚焦显微镜验证小鼠脑的易适用的三维免疫组化成像方法

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摘要

Histological analysis has been largely confined to two-dimensional analysis of thin tissue sections, hampering detailed understanding of three-dimensional cellular distribution in biological tissues. Tissue optical clearing methods enable three-dimensional histological analysis by rendering tissues transparent and suitable for microscopic detection of the fluorescent signals inside. Despite their great potential in histological research, the tissue clearing methods are not readily accessible to many researchers because of hazardous chemicals, complicated protocols and advanced microscopy. Furthermore, poor antibody penetration represents an additional major obstacle when performing three-dimensional immunohistochemical studies. Here, we have examined tissue optical clearing of a mouse brain slice by a non-hazardous aqueous solution, ScaleA2. We modified the ScaleA2 solution by increasing the concentration of detergent. A simple immersion in the modified ScaleA2 solution alone enabled highly intense and uniform immunolabeling into deep tissues in three-dimensional immunostaining. Conventional confocal microscopy could image three-dimensional immunostaining of vasculature and astrocytes with fine processes to 1 mm imaging depth. Collectively, our technically straightforward clearing method will facilitate the common application of three-dimensional immunohistochemical analysis in many research fields including neuroscience, expanding our understanding of the detailed spatial cellular distribution underlying the physiology and pathology.
机译:组织学分析主要局限于薄组织切片的二维分析,妨碍了对生物组织中三维细胞分布的详细了解。组织光学清洁方法通过呈现透明组织并且适用于内部荧光信号的微观检测来实现三维组织学分析。尽管其在组织学研究中具有巨大潜力,但由于危险化学品,复杂的方案和先进的显微镜,许多研究人员而言,组织清除方法并不容易访问。此外,在进行三维免疫组织化学研究时,较差的抗体渗透是一种额外的主要障碍。在这里,我们通过危险水溶液,Scalea2检查了小鼠脑切片的组织光学清除。通过增加洗涤剂的浓度,我们改变了Scalea2解决方案。单独将改性的Scalea2溶液中的简单浸入到三维免疫染色中具有高强度和均匀的免疫标签。常规的共聚焦显微镜可以通过精细的工艺对脉管系统和星形胶质细胞进行三维免疫染色至1mm成像深度。集体,我们的技术直接的清算方法将促进三维免疫组织化学分析在包括神经科学的许多研究领域的常见应用,扩大了我们对生理学和病理学的详细空间细胞分布的理解。

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