Sherry David M, Stiles Megan A
Department of Cell Biology, University of Oklahoma Health Sciences Center, United States.
Neurosurgery, University of Oklahoma Health Sciences Center, United States.
MethodsX. 2022 Aug 1;9:101796. doi: 10.1016/j.mex.2022.101796. eCollection 2022.
Expansion microscopy (ExM) is a microscopic imaging approach that can achieve super-resolution visualization of fluorescently labeled biological samples using conventional fluorescence microscopy. The method is based on embedding of a fluorescently labeled biological sample in a hydrogel matrix followed by the physical expansion of the specimen, which is then viewed using a conventional fluorescent microscope. Variations of the method can be used to visualize endogenously expressed fluorescent proteins, such as GFP, fluorescently tagged antibodies, nucleic acids, or other fluorescently tagged molecules. A significant challenge of the method is that the physical expansion of the specimen produces a concommitant reduction in fluorescence intensity, which can make imaging difficult. We describe an approach for amplifying fluorescence signal following expansion of immunolabeled tissue sections by applying fluorescently labeled Fab fragment secondary antibodies to intensify fluorescent signal and enhance detection of labeling using conventional fluorescent microscopy. A method to increase immunofluorescence signal intensity of Expansion Microscopy specimens is described. Method utilizes commercially available reagents. Enhances ability to acquire useful images in expanded tissue samples.
扩展显微镜技术(ExM)是一种显微成像方法,它能够使用传统荧光显微镜实现对荧光标记生物样本的超分辨率可视化。该方法基于将荧光标记的生物样本嵌入水凝胶基质中,随后对样本进行物理膨胀,然后使用传统荧光显微镜进行观察。该方法的变体可用于可视化内源性表达的荧光蛋白,如绿色荧光蛋白(GFP)、荧光标记抗体、核酸或其他荧光标记分子。该方法的一个重大挑战是样本的物理膨胀会导致荧光强度随之降低,这可能会使成像变得困难。我们描述了一种在免疫标记组织切片膨胀后放大荧光信号的方法,即应用荧光标记的Fab片段二抗来增强荧光信号,并使用传统荧光显微镜增强标记检测。本文描述了一种增加扩展显微镜样本免疫荧光信号强度的方法。该方法利用市售试剂。增强了在膨胀组织样本中获取有用图像的能力。