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通过免疫金法对人中性粒细胞中乳铁蛋白和髓过氧化物酶进行超微结构定位

Ultrastructural localization of lactoferrin and myeloperoxidase in human neutrophils by immunogold.

作者信息

Cramer E, Pryzwansky K B, Villeval J L, Testa U, Breton-Gorius J

出版信息

Blood. 1985 Feb;65(2):423-32.

PMID:2981589
Abstract

Colloidal gold was used as a marker for immunoelectron microscopy to localize lactoferrin (LF) and myeloperoxidase (MPO) in human peripheral blood neutrophils. Cells were reacted with monospecific antibodies against LF or MPO and then with gold-labeled antiglobulin. MPO cytochemistry was also associated with immunologic detection of LF. Immunologic labeling of thin sections after embedding in glycol methacrylate gave good ultrastructural morphology and specific localization of both proteins. MPO was detected in the large azurophil granules, whereas LF was consistently localized in the matrix of another population of morphologically distinct granules, smaller and more numerous than azurophil granules. When cytochemical detection of MPO was coupled with immunologic detection of LF, LF was observed in the population of MPO-negative granules, which were identified as specific. This was confirmed on cells that were permeabilized with saponin and stained for LF and MPO before embedding. No other neutrophil organelles displayed labeling for LF; other blood cells also were unreactive for LF. In the bone marrow, myeloblast and promyelocyte granulations were not stained and LF-containing granules appeared at the myelocyte stage. In conclusion, we confirm previous biochemical and light microscopic studies by ultrastructural demonstration of LF and MPO in two categories of granules, the specific and azurophil granules, respectively. The method described in this article avoids disruption caused by cell fractionation procedures. In the future, other intragranular proteins can be localized by a similar approach.

摘要

胶体金用作免疫电子显微镜的标记物,以在人外周血中性粒细胞中定位乳铁蛋白(LF)和髓过氧化物酶(MPO)。细胞与抗LF或MPO的单特异性抗体反应,然后与金标记的抗球蛋白反应。MPO细胞化学也与LF的免疫学检测相关。用甲基丙烯酸乙二醇酯包埋后的薄切片免疫标记,可得到良好的超微结构形态以及两种蛋白质的特异性定位。MPO在大嗜天青颗粒中被检测到,而LF始终定位于另一群形态上不同的颗粒的基质中,这些颗粒比嗜天青颗粒更小且数量更多。当MPO的细胞化学检测与LF的免疫学检测相结合时,在MPO阴性颗粒群中观察到LF,这些颗粒被确定为特异性颗粒。在用皂苷通透并在包埋前对LF和MPO进行染色的细胞上得到了证实。没有其他中性粒细胞细胞器显示LF标记;其他血细胞对LF也无反应。在骨髓中,原粒细胞和早幼粒细胞的颗粒未被染色,含LF的颗粒在中幼粒细胞阶段出现。总之,我们通过分别在两类颗粒,即特异性颗粒和嗜天青颗粒中对LF和MPO进行超微结构证实,确认了先前的生化和光学显微镜研究。本文所述方法避免了细胞分级分离程序引起的破坏。未来,其他颗粒内蛋白质可通过类似方法进行定位。

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