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A versatile depigmentation, clearing, and labeling method for exploring nervous system diversity

机译:用于探索神经系统多样性的多功能抗衡化,清除和标记方法

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Tissue clearing combined with deep imaging has emerged as a powerful alternative to classical histological techniques. Whereas current techniques have been optimized for imaging selected nonpigmented organs such as the mammalian brain, natural pigmentation remains challenging for most other biological specimens of larger volume. We have developed a fast DEpigmEntation-Plus-Clearing method (DEEP-Clear) that is easily incorporated in existing workflows and combines whole system labeling with a spectrum of detection techniques, ranging from immunohistochemistry to RNA in situ hybridization, labeling of proliferative cells (EdU labeling) and visualization of transgenic markers. With light-sheet imaging of whole animals and detailed confocal studies on pigmented organs, we provide unprecedented insight into eyes, whole nervous systems, and subcellular structures in animal models ranging from worms and squids to axolotls and zebrafish. DEEP-Clear thus paves the way for the exploration of species-rich clades and developmental stages that are largely inaccessible by regular imaging approaches.
机译:组织清除结合深度成像已成为经典组织学技术的强大替代品。虽然目前的技术已经针对成像的成像进行了优化,但是对于哺乳动物大脑,天然色素沉着仍然对大多数较大体积的生物学标本保持挑战。我们开发了一种快速的分析 - 加清除方法(深透明),可以在现有的工作流中轻松结合,并将整个系统标记与一系列检测技术相结合,从免疫组织化学到原位杂交,增殖细胞标记标记(EDU)标记)和转基因标志物的可视化。随着整个动物的光板成像以及对着色器官的详细辅助研究,我们向眼睛,整个神经系统和亚细结构的洞察力提供从蠕虫和鱿鱼到腋窝和斑马鱼的动物模型中的前所未有的洞察力。深度清晰的是探索富含物种的富含种植的植物和发展阶段的方式,该发育阶段主要被定期成像方法难以进入。

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