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恶性贫血中自身抗体与壁细胞表面膜反应的流式微量荧光分析。

Flow microfluorimetric analysis of autoantibody reactions with parietal cell surface membranes in pernicious anaemia.

作者信息

De Aizpurua H J, Ungar B, Toh B H

出版信息

Clin Exp Immunol. 1983 Nov;54(2):405-10.

Abstract

Using flow microfluorimetry (FMF), 60 sera from patients with pernicious anaemia (PA) were examined for immunoreactivity with the surface membranes of viable canine parietal cells. FMF analyses showed that the percentage of parietal cells giving a surface staining reaction with a fluorescence intensity greater than 50 arbitrary units was 44.5 +/- 17.5% for sera from 60 patients with PA compared to 13.7 +/- 2.7% for sera from 14 patients with chronic active hepatitis, 10.7 +/- 6.7% for sera from 10 patients with systemic lupus erythematosus and 16.5 +/- 4.4% for sera from 50 healthy persons. Surface staining detected by FMF was restricted to parietal cells and abolished by absorption with parietal cell enriched preparations but not by absorption with dog or rat hepatocytes, dog or rat kidney cells, human fibroblasts, human AB red blood cells or dog gastric microsomes. The intensity of the parietal cell surface staining reactions correlated with the presence of antibody reactions with parietal cell surfaces previously demonstrated by immunofluorescence microscopy but did not correlate with the presence of microsomal or intrinsic factor autoantibodies. The results provide further support for the presence of a parietal cell surface reactive autoantibody distinct from the conventional parietal cell microsomal autoantibody.

摘要

运用流式微量荧光测定法(FMF),检测了60例恶性贫血(PA)患者血清与存活犬壁细胞表面膜的免疫反应性。FMF分析显示,荧光强度大于50任意单位的壁细胞表面染色反应百分比,PA患者的60份血清为44.5±17.5%,而慢性活动性肝炎患者的14份血清为13.7±2.7%,系统性红斑狼疮患者的10份血清为10.7±6.7%,50名健康人的血清为16.5±4.4%。FMF检测到的表面染色仅限于壁细胞,用富含壁细胞的制剂吸收后染色消失,但用犬或大鼠肝细胞、犬或大鼠肾细胞、人成纤维细胞、人AB红细胞或犬胃微粒体吸收后染色不消失。壁细胞表面染色反应的强度与先前通过免疫荧光显微镜证实的壁细胞表面抗体反应的存在相关,但与微粒体或内因子自身抗体的存在无关。这些结果进一步支持了存在一种不同于传统壁细胞微粒体自身抗体的壁细胞表面反应性自身抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d296/1535887/9be46f104fc0/clinexpimmunol00152-0122-a.jpg

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