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视交叉上核中Fos蛋白免疫组化标记的分析:不同定量方法的比较

Analysis of immunohistochemical label of Fos protein in the suprachiasmatic nucleus: comparison of different methods of quantification.

作者信息

Rieux C, Carney R, Lupi D, Dkhissi-Benyahya O, Jansen K, Chounlamountri N, Foster R G, Cooper H M

机构信息

Institut National de la Santé de la Recherche Médicale Unité 371, Cerveau et Vision, Bron, France.

出版信息

J Biol Rhythms. 2002 Apr;17(2):121-36. doi: 10.1177/074873002129002410.

Abstract

The induction of the proto-oncogene c-fos, and its phosphoprotein product Fos, has been extensively used to study the effects of light on the circadian pacemaker in the suprachiasmatic nucleus (SCN). Experimental approaches to the quantification of Fos induction have mainly been based on immunohistochemistry and subsequent measure of Fos immunoreactivity (IR) in sections of the SCN. In this study, the authors compare several methods of quantification using optical density image analysis or counts of Fos-IR labeled cells. To assess whether optical density measures using image analysis reflect the amount of Fos in brain tissue, the authors developed standards of known concentrations of Fos protein in an agar matrix. The agar standards were sectioned and treated simultaneously with sections of the SCN from animals exposed to different levels of irradiance. Optical density was found to be proportional to the quantity of Fos in the sections, indicating that this measure accurately reflects relative levels of Fos protein induction. Quantification by optical density analysis allows an objective measure in which the various parameters, conditions of illumination, and threshold can be maintained constant throughout the analysis. Counting cells by visual observation is more subjective because threshold values cannot be precisely defined and can vary according to the observer, illumination, degree of label, and other factors. In addition, cell counts involving direct visual observation, automated cell counts, or stereological methods do not take into account the difference in the density of label between cells, thus giving equal weight to lightly or densely stained cells. These measures are more or less weakly correlated with measures of optical density and thus do not accurately reflect the amount of bound Fos protein in the tissue sections. In contrast, labeled surface area as measured by image analysis shows a linear relationship with optical density. The main outcome of this study is that computer-assisted image analysis provides an accurate and rapid method to determine the relative amount of Fos protein in the SCN and the effects of light on intracellular signaling mechanisms involved in the circadian clock.

摘要

原癌基因c-fos及其磷酸化蛋白产物Fos的诱导,已被广泛用于研究光照对视交叉上核(SCN)中昼夜节律起搏器的影响。Fos诱导定量的实验方法主要基于免疫组织化学以及随后对SCN切片中Fos免疫反应性(IR)的测量。在本研究中,作者比较了几种使用光密度图像分析或Fos-IR标记细胞计数的定量方法。为了评估使用图像分析的光密度测量是否反映脑组织中Fos的含量,作者在琼脂基质中建立了已知浓度的Fos蛋白标准品。将琼脂标准品切片,并与暴露于不同光照水平的动物的SCN切片同时进行处理。发现光密度与切片中Fos的量成正比,表明该测量准确反映了Fos蛋白诱导的相对水平。通过光密度分析进行定量允许进行客观测量,其中各种参数、光照条件和阈值在整个分析过程中可以保持恒定。通过视觉观察计数细胞更主观,因为阈值无法精确界定,并且会因观察者、光照、标记程度和其他因素而有所不同。此外,涉及直接视觉观察、自动细胞计数或体视学方法的细胞计数没有考虑细胞之间标记密度的差异,因此对轻度或重度染色的细胞给予同等权重。这些测量与光密度测量的相关性或多或少较弱,因此不能准确反映组织切片中结合的Fos蛋白的量。相比之下,通过图像分析测量的标记表面积与光密度呈线性关系。本研究的主要成果是,计算机辅助图像分析提供了一种准确且快速的方法来确定SCN中Fos蛋白的相对含量以及光照对昼夜节律时钟所涉及的细胞内信号传导机制的影响。

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