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髓过氧化物酶缺陷型单核细胞中呼吸爆发增加。

Increased respiratory burst in myeloperoxidase-deficient monocytes.

作者信息

Locksley R M, Wilson C B, Klebanoff S J

出版信息

Blood. 1983 Oct;62(4):902-9.

PMID:6309288
Abstract

Studies of the respiratory burst in myeloperoxidase (MPO) deficient monocytes were undertaken to assess the physiologic consequence of the absence of MPO in these cells. As previously demonstrated with neutrophils, MPO-deficient monocytes had a greater initial rate, duration, and total superoxide production in response to phagocytosis of zymosan than did normal monocytes. Introduction of purified eosinophil peroxidase (EPO) into the phagosome by binding the enzyme to the surface of the zymosan particles changed the hypermetabolic characteristics of superoxide production in MPO-deficient cells to more closely resemble normal cells, but had no effect on superoxide generation by the normal monocytes. Further, inactivation of the bound EPO before ingestion restored the supranormal respiratory burst by the MPO-deficient cells. Iodination by MPO-deficient monocytes was significantly depressed as compared to normal monocytes following the ingestion of zymosan (1.9 versus 10.1 nmole I-/10(7) monocytes/30 min; p less than 0.01). In contrast, iodination was markedly augmented in MPO-deficient cells compared to normal cells after ingestion of zymosan coated with EPO (208 versus 70 nmole I-/10(7) monocytes/30 min; p less than 0.005), presumably reflecting the greater amounts of hydrogen peroxide formed by MPO-deficient cells. There were no differences in the levels of endogenous scavengers of reactive oxygen products (catalase, superoxide dismutase, glutathione peroxidase and reductase, and total glutathione) in MPO-deficient and normal monocytes that would account for the enhanced respiratory burst of MPO-deficient cells. These findings support a role for peroxidase in the termination of the respiratory burst of monocytes.

摘要

开展了对髓过氧化物酶(MPO)缺陷型单核细胞呼吸爆发的研究,以评估这些细胞中缺乏MPO的生理后果。如先前在中性粒细胞中所证实的那样,与正常单核细胞相比,MPO缺陷型单核细胞在吞噬酵母聚糖后具有更高的初始速率、持续时间和超氧化物总生成量。通过将纯化的嗜酸性粒细胞过氧化物酶(EPO)结合到酵母聚糖颗粒表面而将其引入吞噬体,可使MPO缺陷型细胞中超氧化物生成的高代谢特征更接近正常细胞,但对正常单核细胞的超氧化物生成没有影响。此外,在摄取前使结合的EPO失活可恢复MPO缺陷型细胞的超常呼吸爆发。与正常单核细胞相比,MPO缺陷型单核细胞在摄取酵母聚糖后碘化作用明显降低(1.9对10.1纳摩尔碘离子/10⁷单核细胞/30分钟;p<0.01)。相反,在摄取涂有EPO的酵母聚糖后,与正常细胞相比,MPO缺陷型细胞中的碘化作用明显增强(208对70纳摩尔碘离子/10⁷单核细胞/30分钟;p<0.005),这可能反映了MPO缺陷型细胞形成的过氧化氢量更多。MPO缺陷型和正常单核细胞中活性氧产物内源性清除剂(过氧化氢酶、超氧化物歧化酶、谷胱甘肽过氧化物酶和还原酶以及总谷胱甘肽)的水平没有差异,这可以解释MPO缺陷型细胞增强的呼吸爆发。这些发现支持过氧化物酶在单核细胞呼吸爆发终止中起作用。

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