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小鼠派尔集合淋巴结上皮细胞异质性的共聚焦显微镜分析。

Confocal microscopical analysis of epithelial cell heterogeneity in mouse Peyer's patches.

作者信息

James P S, Rossetti C, Smith M W, Cremaschi D

机构信息

AFRC Institute of Animal Physiology and Genetics Research, Babraham, Cambridge, UK.

出版信息

Histochem J. 1992 May;24(5):243-50. doi: 10.1007/BF01046838.

Abstract

Cyanine dye fluorescence and alkaline phosphatase activities have been compared directly by confocal microscopy in a wide variety of cells present in the follicle-associated epithelium of the mouse Peyer's patch to test the hypothesis that antigen-transporting M cells have a low membrane potential. In order to make these comparisons it was first necessary to equilibrate living tissue with the membrane potential sensitive dye DIOC5(3), fix with glutaraldehyde and then incubate the fixed tissue with naphthol AS-BI phosphate, a substrate which is hydrolysed by alkaline phosphatase present in the luminal membrane of these epithelial cells. Naphthol AS-BI produced by this reaction is then coupled to Fast Red TR diazonium salt at the site of hydrolysis. Selecting the 488 nm wavelength of the argon laser source then allows one to measure alkaline phosphatase activities as Fast Red absorbance and membrane potentials by DIOC5(3) fluorescence. Results obtained show a linear correlation between membrane potential and alkaline phosphatase activity. Relative lack of alkaline phosphatase activity, determined in fixed tissue, has been used previously to identify antigen-transporting M cells (Smith et al., 1987). The present work shows that it is now possible to recognize these cells in living tissue by measurement of DIOC5(3) fluorescence. The possible importance of this finding in providing a way to study cell surface-antigen interactions taking place in living tissue is discussed.

摘要

通过共聚焦显微镜直接比较了小鼠派尔集合淋巴结滤泡相关上皮中多种细胞的花青染料荧光和碱性磷酸酶活性,以检验抗原转运M细胞膜电位较低这一假说。为了进行这些比较,首先必须用膜电位敏感染料DIOC5(3)使活组织达到平衡,用戊二醛固定,然后用萘酚AS-BI磷酸酯孵育固定组织,萘酚AS-BI磷酸酯是这些上皮细胞腔膜中存在的碱性磷酸酶水解的底物。该反应产生的萘酚AS-BI然后在水解部位与固红TR重氮盐偶联。选择氩激光源的488nm波长,然后可以通过固红吸光度测量碱性磷酸酶活性,并通过DIOC5(3)荧光测量膜电位。获得的结果表明膜电位与碱性磷酸酶活性之间存在线性相关性。先前已利用固定组织中碱性磷酸酶活性的相对缺乏来鉴定抗原转运M细胞(史密斯等人,1987年)。目前的研究表明,现在可以通过测量DIOC5(3)荧光在活组织中识别这些细胞。讨论了这一发现对于提供一种研究活组织中发生的细胞表面-抗原相互作用的方法的潜在重要性。

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