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首页> 外文期刊>Physiological Research >Dipyridamole inhibits hydroxylamine augmented nitric oxide (NO) production by activated polymorphonuclear neutrophils through an adenosine-independent mechanism
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Dipyridamole inhibits hydroxylamine augmented nitric oxide (NO) production by activated polymorphonuclear neutrophils through an adenosine-independent mechanism

机译:双嘧达莫通过独立于腺苷的机制抑制活化的多形核中性粒细胞抑制羟胺增加的一氧化氮(NO)的产生

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Polymorphonuclear neutrophils (PMN) are thought to play a role in reperfusion injury and ischemia. These effects are partly mediated by toxic oxygen species (superoxide anion, hydrogen peroxide and hydroxyl radical) acting at the level of the endothelium. It was demonstrated recently that the superoxide anion reacts with nitric oxide (NO) and that interaction leads to the generation of highly toxic peroxynitrite. Several drugs were tested so far in order to affect PMN function. It was demonstrated that dipyridamole (2,6-bis-diethanolamino-4,8-dipiperidinopyrimido-(5,4-d)-pyrimidine) can influence neutrophil function by inhibiting adenosine uptake. However, this action can not fully explain all of the observed effects of dipyridamole action on PMN metabolism. The aim of our study was to evaluate the influence of dipyridamole on nitric oxide production by activated polymorphonuclear neutrophils. Incubation of PMN's with hydroxylamine (HA) and phorbol myristate acetate (PMA) generated nitrite (36.4+/-4.2 nmol/h 2x10(6) PMN), dipyridamole at 100 mumol/l, 50 mumol/l and 10 mumol/l caused a considerable drop in nitrite production (11.8+/-1.8, 19.7+/-2.7 and 27.4+/-3.2 nmol/h, respectively). Neither adenosine nor the adenosine analogue could mimic the dipyridamole effect. Moreover theophylline, an adenosine inhibitor could not reverse the dipirydamole action on PMN metabolism. We also found that dipyridamole inhibited hydrogen peroxide release from neutrophils. Catalase that scavenges hydrogen peroxide also largely abolished nitric oxide release from PMN. It is evident that dipyridamole inhibits hydroxylamine-augmented nitric oxide production by activated polymorphonuclear neutrophils through an adenosine-independent mechanism.
机译:多形核中性粒细胞(PMN)被认为在再灌注损伤和局部缺血中起作用。这些作用部分由作用于内皮水平的有毒氧(超氧阴离子,过氧化氢和羟​​基自由基)介导。最近证明,超氧阴离子与一氧化氮(NO)反应,并且该相互作用导致产生高毒性的过氧亚硝酸盐。迄今为止已经测试了几种药物以影响PMN功能。已证明双嘧达莫(2,6-双-二乙醇氨基-4,8-​​二哌啶基嘧啶-(5,4-d)-嘧啶)可以通过抑制腺苷摄取来影响中性粒细胞功能。然而,该作用不能完全解释双嘧达莫作用对PMN代谢的所有观察到的作用。我们的研究目的是评估双嘧达莫对活化多形核中性粒细胞产生一氧化氮的影响。将PMN与羟胺(HA)和佛波肉豆蔻酸酯乙酸酯(PMA)孵育会生成亚硝酸盐(36.4 +/- 4.2 nmol / h 2x10(6)PMN),双嘧达莫分别为100μmol/ l,50μmol/ l和10μmol/ l亚硝酸盐产量大幅下降(分别为11.8 +/- 1.8、19.7 +/- 2.7和27.4 +/- 3.2 nmol / h)。腺苷或腺苷类似物均不能模仿双嘧达莫的作用。此外,茶碱(一种腺苷抑制剂)不能逆转双嘧达莫对PMN代谢的作用。我们还发现双嘧达莫抑制嗜中性粒细胞释放过氧化氢。清除过氧化氢的过氧化氢酶也大大消除了PMN中释放的一氧化氮。显然,双嘧达莫通过独立于腺苷的机制抑制了活化的多形核中性粒细胞抑制羟胺增强的一氧化氮的产生。

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