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首页> 外文期刊>Free radical research >Reactive oxygen metabolite production is inhibited by histamine and H1-antagonist dithiaden in human PMN leukocytes.
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Reactive oxygen metabolite production is inhibited by histamine and H1-antagonist dithiaden in human PMN leukocytes.

机译:在人的PMN白细胞中,组胺和H1拮抗剂双硫噻酮抑制了活性氧代谢产物的产生。

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摘要

The study evaluated the distinction between extracellular and intracellular production of reactive oxygen metabolites (ROM) in isolated polymorphonuclear leukocytes (PMNL) stimulated with opsonised zymosan (OZ) and investigated its modulation by the endogenous mediator histamine (0.1-100 mumol/l) and by the H1-antagonist dithiaden (1-100 mumol/l). For this observation, a modified luminol and an isoluminol amplified chemiluminescence (CL) technique were used. Our results showed that PMNL activated with OZ responded with a respiratory burst accompanied by both extra- and intracellular generation of ROM. Histamine and dithiaden significantly decreased both the extra- and intracellular component of chemiluminescence stimulated with OZ. While dithiaden decreased both the extra- and intracellular part of CL with the same potency, histamine decreased preferentially the extracellular part of CL. The fact that histamine as well as the H1-antagonist dithiaden decreased the respiratory burst indicates that not only histamine receptors but also non-receptor mechanisms could be involved in the reduction of CL. Interaction with enzymes (NADPH-oxidase, myeloperoxidase, phospholipase A2) or interference with PMNL membrane structure may well result in reduction of the chemiluminescence signal.
机译:该研究评估了用调理化酵母聚糖(OZ)刺激的分离的多形核白细胞(PMNL)在细胞外和细胞内产生活性氧代谢产物(ROM)的区别,并研究了内源性介质组胺(0.1-100μmol/ l)和H1拮抗剂二硫杂(1-100摩尔/升)。对于此观察结果,使用了改良的鲁米诺和异鲁米诺放大化学发光(CL)技术。我们的结果表明,被OZ激活的PMNL伴随着呼吸爆发,并伴随着细胞外和细胞内ROM的产生。组胺和双硫噻酮可显着降低OZ刺激的化学发光的细胞外和细胞内成分。尽管二硫噻嗪以相同的效力降低了CL的细胞外和细胞内部分,但是组胺优先降低了CL的细胞外部分。组胺以及H1拮抗剂双硫噻酮减少了呼吸爆发的事实表明,不仅组胺受体而且非受体机制都可能参与CL的降低。与酶(NADPH-氧化酶,髓过氧化物酶,磷脂酶A2)的相互作用或与PMNL膜结构的干扰都可能导致化学发光信号的减少。

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