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培养的大鼠肾小球脏层上皮细胞表面抗原的表达与调节

Expression and modulation of surface antigens in cultured rat glomerular visceral epithelial cells.

作者信息

Camussi G, Kerjaschki D, Gonda M, Nevins T, Rielle J C, Brentjens J, Andres G

机构信息

Department of Pathology, State University of New York at Buffalo 14214.

出版信息

J Histochem Cytochem. 1989 Nov;37(11):1675-87. doi: 10.1177/37.11.2809176.

Abstract

This study, using immunocytochemical light and electron microscopy techniques, characterizes the distribution of three antibodies bound to the surface of rat glomerular visceral epithelial cells (GEC) in culture, and tests their ability to redistribute corresponding antigens under conditions appropriate for antigenic modulation (antigen disappearance). At 4 degrees C or after fixation, anti-renal tubular brush border vesicle (BBV) IgG bound diffusely to the surface of GEC and to coated pits. Anti-gp330 IgG had a discrete distribution on the surface of GEC and reacted with coated pits. Anti-podocalyxin IgG was bound diffusely to the surface of GEC but not to coated pits. At 37 degrees C, anti-BBV IgG induced marked redistribution of immune complexes with both shedding and internalization. Anti-gp330 IgG induced weaker redistribution, with internalization of immune complexes predominating. Anti-podocalyxin IgG induced rapid redistribution of immune complexes and antigenic modulation but minimal internalization. Experiments of differential redistribution indicated that anti-BBV IgG modulated the expression of both gp330 and podocalyxin; anti-gp330 IgG had a weaker effect on BBV antigens and podocalyxin; and anti-podocalyxin failed to redistribute BBV antigens or gp330. The relevance of these immunocytochemical studies of antibody-cell surface antigen interaction in cultured GEC to understanding the pathogenesis of Heymann glomerulonephritis (HG) is discussed.

摘要

本研究运用免疫细胞化学光镜和电镜技术,对培养的大鼠肾小球脏层上皮细胞(GEC)表面结合的三种抗体的分布进行了表征,并在适合抗原调节(抗原消失)的条件下测试了它们重新分布相应抗原的能力。在4℃或固定后,抗肾小管刷状缘小泡(BBV)IgG弥漫性地结合于GEC表面及被膜小窝。抗gp330 IgG在GEC表面呈离散分布,并与被膜小窝发生反应。抗足突细胞蛋白IgG弥漫性地结合于GEC表面,但不与被膜小窝结合。在37℃时,抗BBV IgG诱导免疫复合物的明显重新分布,包括脱落和内化。抗gp330 IgG诱导的重新分布较弱,免疫复合物内化占主导。抗足突细胞蛋白IgG诱导免疫复合物的快速重新分布和抗原调节,但内化极少。差异重新分布实验表明,抗BBV IgG调节gp330和足突细胞蛋白的表达;抗gp330 IgG对BBV抗原和足突细胞蛋白的作用较弱;抗足突细胞蛋白未能重新分布BBV抗原或gp330。本文讨论了这些在培养的GEC中关于抗体 - 细胞表面抗原相互作用的免疫细胞化学研究对于理解海曼肾小球肾炎(HG)发病机制的相关性。

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