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十种提高免疫染色质量的方法:免疫荧光优化最新进展综述

Ten Approaches That Improve Immunostaining: A Review of the Latest Advances for the Optimization of Immunofluorescence.

机构信息

Departamento de Biología, Facultad de Ciencias Básicas, Universidad Metropolitana de Ciencias de la Educación, Santiago 7760197, Chile.

Departamento de Fisiología, Biofísica y Neurociencias, Cinvestav del IPN, Ciudad de México 07360, Mexico.

出版信息

Int J Mol Sci. 2022 Jan 26;23(3):1426. doi: 10.3390/ijms23031426.

Abstract

Immunostaining has emerged as one of the most common and valuable techniques that allow the localization of proteins at a quantitative level within cells and tissues using antibodies coupled to enzymes, fluorochromes, or colloidal nanogold particles. The application of fluorochromes during immunolabeling is referred to as immunofluorescence, a method coupled to widefield or confocal microscopy and extensively applied in basic research and clinical diagnosis. Notwithstanding, there are still disadvantages associated with the application of this technique due to technical challenges in the process, such as sample fixation, permeabilization, antibody incubation times, and fluid exchange, etc. These disadvantages call for continuous updates and improvements to the protocols extensively described in the literature. This review contributes to protocol optimization, outlining 10 current methods for improving sample processing in different stages of immunofluorescence, including a section with further recommendations. Additionally, we have extended our own antibody signal enhancer method, which was reported to significantly increase antibody signals and is useful for cervical cancer detection, to improve the signals of fluorochrome-conjugated staining reagents in fibrous tissues. In summary, this review is a valuable tool for experienced researchers and beginners when planning or troubleshooting the immunofluorescence assay.

摘要

免疫染色已成为最常用和最有价值的技术之一,它使用与酶、荧光染料或胶体纳米金颗粒偶联的抗体,允许在细胞和组织内定量定位蛋白质。在免疫标记过程中应用荧光染料称为免疫荧光,这是一种与宽场或共聚焦显微镜相结合的方法,广泛应用于基础研究和临床诊断。然而,由于该技术在样品固定、通透、抗体孵育时间和液体交换等方面存在技术挑战,该技术的应用仍存在一些缺点。这些缺点要求对文献中广泛描述的方案进行持续更新和改进。本综述有助于方案优化,概述了 10 种当前方法,用于改善免疫荧光不同阶段的样品处理,包括进一步建议的部分。此外,我们还扩展了我们自己的抗体信号增强方法,该方法已被报道可显著增加抗体信号,并且对宫颈癌检测有用,以改善纤维组织中荧光染料标记染色试剂的信号。总之,当计划或解决免疫荧光检测问题时,本综述对于有经验的研究人员和初学者来说是一个有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68c5/8836139/12105993aa06/ijms-23-01426-g001.jpg

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