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组织切片的同步多色免疫荧光染色及通过标准共聚焦显微镜对多达七个参数的连续成像

Simultaneous Polychromatic Immunofluorescent Staining of Tissue Sections and Consecutive Imaging of up to Seven Parameters by Standard Confocal Microscopy.

作者信息

Schmidt Alfonso J, Mayer Johannes U, Wallace Paul K, Ronchese Franca, Price Kylie M

机构信息

Malaghan Institute of Medical Research, Wellington, New Zealand.

Department of Flow & Image Cytometry, Roswell Park Comprehensive Cancer Center, Buffalo, New York.

出版信息

Curr Protoc Cytom. 2019 Dec;91(1):e64. doi: 10.1002/cpcy.64.

DOI:10.1002/cpcy.64
PMID:31763771
Abstract

Confocal microscopy has been an important imaging tool for life scientists for over 20 years. Early techniques focused on indirect staining processes that involved staining with an unconjugated primary antibody, followed by incubation with a secondary fluorescent antibody that would reveal and amplify the signal of the primary antibody. With more and more directly conjugated fluorescent primary antibodies becoming commercially available, staining with multiple fluorescent primary antibodies is now more frequent. To date, staining with up to three primary antibodies and a nuclear dye is widely practiced. Here, we describe an important improvement to the standard polychromatic immunofluorescent staining protocol that allows the simultaneous detection of seven fluorescent parameters using a standard confocal laser scanning microscope with four laser lines and four photomultiplier tubes. By incorporating recently available tandem dyes that emit in the blue and violet regions of the visible light spectrum (Brilliant Blue and Brilliant Violet), we were able to differentiate several additional fluorochromes simultaneously. Due to the added complexity of 7-color immunofluorescent imaging, we developed a clear methodology to optimize antibody concentrations and simple guidelines on how to identify and correct non-specific signals. These are detailed in the following protocol. © 2019 by John Wiley & Sons, Inc. Basic Protocol: 7-Color immunofluorescent staining protocol using directly conjugated antibodies Support Protocol 1: Antibody titration protocol Support Protocol 2: Spillover optimization protocol.

摘要

二十多年来,共聚焦显微镜一直是生命科学家的重要成像工具。早期技术侧重于间接染色过程,即先用未偶联的一抗进行染色,然后与二抗荧光抗体孵育,二抗会揭示并放大一抗的信号。随着越来越多直接偶联的荧光一抗上市,现在使用多种荧光一抗进行染色的情况更为常见。迄今为止,使用多达三种一抗和一种核染料进行染色已被广泛应用。在此,我们描述了对标准多色免疫荧光染色方案的一项重要改进,该改进允许使用具有四条激光线和四个光电倍增管的标准共聚焦激光扫描显微镜同时检测七个荧光参数。通过加入最近可用的在可见光光谱的蓝色和紫色区域发射的串联染料(亮蓝和亮紫),我们能够同时区分几种额外的荧光染料。由于七色免疫荧光成像的复杂性增加,我们开发了一种明确的方法来优化抗体浓度,并给出了关于如何识别和校正非特异性信号的简单指南。这些将在以下方案中详细介绍。© 2019 约翰威立国际出版公司。基本方案:使用直接偶联抗体的七色免疫荧光染色方案 支持方案 1:抗体滴定方案 支持方案 2:溢出优化方案。

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