Adult Stem Cell Laboratory, The Francis Crick Institute, London, UK.
Department of Molecular Pathology, Oncode Institute, Netherlands Cancer Institute, Amsterdam, the Netherlands.
Nat Protoc. 2021 Jan;16(1):239-262. doi: 10.1038/s41596-020-00414-z. Epub 2020 Nov 27.
Advances in light-sheet and confocal microscopy now allow imaging of cleared large biological tissue samples and enable the 3D appreciation of cell and protein localization in their native organ environment. However, the sample preparations for such imaging are often onerous, and their capability for antigen detection is limited. Here, we describe FLASH (fast light-microscopic analysis of antibody-stained whole organs), a simple, rapid, fully customizable technique for molecular phenotyping of intact tissue volumes. FLASH utilizes non-degradative epitope recovery and membrane solubilization to enable the detection of a multitude of membranous, cytoplasmic and nuclear antigens in whole mouse organs and embryos, human biopsies, organoids and Drosophila. Retrieval and immunolabeling of epithelial markers, an obstacle for previous clearing techniques, can be achieved with FLASH. Upon volumetric imaging, FLASH-processed samples preserve their architecture and integrity and can be paraffin-embedded for subsequent histopathological analysis. The technique can be performed by scientists trained in light microscopy and yields results in <1 week.
光片和共聚焦显微镜的进步现在允许对已清除的大型生物组织样本进行成像,并能够在其天然器官环境中 3D 欣赏细胞和蛋白质定位。然而,此类成像的样本制备通常很繁琐,并且它们的抗原检测能力有限。在这里,我们描述了 FLASH(快速抗体染色全器官的光镜分析),这是一种简单、快速、完全可定制的技术,可用于完整组织体积的分子表型分析。FLASH 利用非降解表位回收和膜溶解来实现对整个小鼠器官和胚胎、人类活检、类器官和果蝇中多种膜性、细胞质和核抗原的检测。FLASH 可以实现上皮标记物的检索和免疫标记,这是以前的清除技术的一个障碍。经过体积成像,FLASH 处理的样本保持其结构和完整性,并可用于石蜡包埋以进行后续组织病理学分析。该技术可以由接受过光镜培训的科学家进行,并且在<1 周内即可获得结果。