Biology Department, College of Science and Engineering, Western Washington University, Bellingham, Washington.
Inclusive Learning Group, Science Education Department, Howard Hughes Medical Institute, Chevy Chase, Maryland.
Curr Protoc. 2023 Aug;3(8):e842. doi: 10.1002/cpz1.842.
Visualizing fluorescence-tagged molecules is a powerful strategy that can reveal the complex dynamics of the cell. One robust and broadly applicable method is immunofluorescence microscopy, in which a fluorescence-labeled antibody binds the molecule of interest and then the location of the antibody is determined by fluorescence microscopy. The effective application of this technique includes several considerations, such as the nature of the antigen, specificity of the antibody, permeabilization and fixation of the specimen, and fluorescence imaging of the cell. Although each protocol will require fine-tuning depending on the cell type, antibody, and antigen, there are steps common to nearly all applications. This article provides protocols for staining the cytoskeleton and organelles in two very different kinds of cells: flat, adherent fibroblasts and thick, free-swimming Tetrahymena cells. Additional protocols enable visualization with widefield, laser scanning confocal, and eSRRF super-resolution fluorescence microscopy. © 2023 Wiley Periodicals LLC. Basic Protocol 1: Immunofluorescence staining of adherent cells such as fibroblasts Basic Protocol 2: Immunofluorescence of suspension cells such as Tetrahymena Basic Protocol 3: Visualizing samples with a widefield fluorescence microscope Alternate Protocol 1: Staining suspension cells adhered to poly-l-lysine-coated coverslips Alternate Protocol 2: Visualizing samples with a laser scanning confocal microscope Alternate Protocol 3: Generating super-resolution images with SRRF microscopy.
可视化荧光标记的分子是一种强大的策略,可以揭示细胞的复杂动态。一种强大且广泛适用的方法是免疫荧光显微镜技术,其中荧光标记的抗体与感兴趣的分子结合,然后通过荧光显微镜确定抗体的位置。该技术的有效应用包括几个考虑因素,例如抗原的性质、抗体的特异性、标本的通透和固定,以及细胞的荧光成像。尽管每个方案都需要根据细胞类型、抗体和抗原进行微调,但几乎所有应用都有一些共同的步骤。本文提供了两种非常不同类型的细胞(扁平、贴壁的成纤维细胞和厚而自由游动的四膜虫细胞)中细胞骨架和细胞器染色的方案。其他方案可用于宽场、激光扫描共聚焦和 eSRRF 超分辨率荧光显微镜的可视化。© 2023 威利父子公司。基本方案 1:对贴壁细胞(如成纤维细胞)进行免疫荧光染色基本方案 2:对悬浮细胞(如四膜虫)进行免疫荧光染色基本方案 3:用宽场荧光显微镜观察样品备选方案 1:对附着在聚-L-赖氨酸涂层盖玻片上的悬浮细胞进行染色备选方案 2:用激光扫描共聚焦显微镜观察样品备选方案 3:用 SRRF 显微镜生成超分辨率图像。