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免疫组织化学技术及其在呼吸系统组织病理学中的应用。

Immunohistochemical techniques and their applications in the histopathology of the respiratory system.

作者信息

Linnoila I, Petrusz P

出版信息

Environ Health Perspect. 1984 Jun;56:131-48. doi: 10.1289/ehp.8456131.

Abstract

Subsequent to the first report in the 1940s on incubation of tissue sections with fluorescein-conjugated antibodies for localization of antigens, a great number of modifications were introduced to improve the validity of immunohistochemistry which has become a growingly popular tool. The use of immunoenzymatic techniques eliminates the need for expensive fluorescence microscopy equipment, the lack of permanency of preparations and the lack of electron density required in ultrastructural localization of antigens. Regardless of the technique, it is also important to choose a correct fixation which allows the proper preservation of antigens and morphology and the penetration of antibodies through the entire thickness of the preparation. A variety of immunohistochemical techniques have been applied to study several components of the lung, such as collagen, surface active material, lung specific antigens, and enzymes and the detection of tumor markers, immunoglobulins and infectious agents in the respiratory system which is reviewed. The large surface area and the multiplicity of cell types provided by the respiratory tract epithelium of humans for exposure to microbial as well as toxic substances in the environment make this organ system very vulnerable but a good early indicator of adverse health effects. Immunohistochemistry provides valuable information complementary to the immunochemical and biochemical characterization of this barrier.

摘要

20世纪40年代首次报道用荧光素偶联抗体孵育组织切片以定位抗原后,人们引入了大量改进方法来提高免疫组织化学的有效性,免疫组织化学已成为一种越来越受欢迎的工具。免疫酶技术的应用消除了对昂贵的荧光显微镜设备的需求,解决了标本缺乏永久性以及抗原超微结构定位所需电子密度不足的问题。无论采用何种技术,选择正确的固定方法也很重要,这种方法能使抗原和形态得到妥善保存,并使抗体穿透整个标本厚度。多种免疫组织化学技术已被应用于研究肺的多种成分,如胶原蛋白、表面活性物质、肺特异性抗原和酶,以及呼吸系统中肿瘤标志物、免疫球蛋白和感染因子的检测,本文对此进行综述。人类呼吸道上皮提供了较大的表面积和多种细胞类型,使其暴露于环境中的微生物和有毒物质中,这使得该器官系统非常脆弱,但却是健康不良影响的良好早期指标。免疫组织化学为该屏障的免疫化学和生化特征提供了有价值的补充信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff0/1568194/1e0b49abda7d/envhper00450-0139-a.jpg

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