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首页> 外文期刊>Vascular pharmacology >Nitroglycerin-patch induced tolerance is associated with reduced ability of nitroglycerin to increase exhaled nitric oxide.
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Nitroglycerin-patch induced tolerance is associated with reduced ability of nitroglycerin to increase exhaled nitric oxide.

机译:硝酸甘油补丁诱导的耐受性与硝酸甘油增加呼出一氧化氮的能力降低有关。

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摘要

Nitroglycerin (GTN), used in the treatment of ischemic heart disease, acts through the liberation of nitric oxide (NO). However, its clinical use is limited due to tolerance development. Expired NO was used as an indicator of GTN-bioactivation and was measured together with plasma nitrite and mean arterial pressure (MAP) during GTN indicator infusions. The model was applied in rabbits subjected to various time periods of low-dose GTN pretreatment by patch application for 1, 24 and 72 h. Pretreatment with GTN-patch resulted in significant attenuation of expired NO from the GTN indicator infusion in the 24 h and 72 h pretreatment groups compared to placebo (72 h). Dose-response curves with increasing GTN infusions after 24 h GTN-patch pretreatment revealed a significant attenuation of the MAP decrease compared to placebo. GTN-induced changes in plasma nitrite correlated to increases in expired NO and decreases in MAP. This indicates that expired NO could serve as an indicator of NO generation from GTN in the vascular system. We conclude that GTN tolerance is associated with reduced capacity to generate NO from GTN. Care should be taken in using MAP-reduction to evaluate tolerance since high indicator doses could liberate sufficient amounts of NO to elicit maximal MAP decrease even in tolerant animals.
机译:硝酸甘油(GTN)用于治疗缺血性心脏病,通过释放一氧化氮(NO)发挥作用。然而,由于耐受性的发展,其临床用途受到限制。过期的NO用作GTN生物活化的指标,并在输注GTN时与血浆亚硝酸盐和平均动脉压(MAP)一起进行测量。将该模型应用于通过贴片施用分别接受低剂量GTN预处理的不同时间段的兔子1、24和72小时。与安慰剂(72小时)相比,在24小时和72小时预处理组中,使用GTN贴片进行预处理可显着降低GTN指示剂输注引起的过期NO。与安慰剂相比,在24小时GTN贴片预处理后,随着GTN输注量的增加,剂量反应曲线显示出MAP降低的显着衰减。 GTN诱导的血浆亚硝酸盐变化与过期NO的增加和MAP的降低相关。这表明,过期的NO可以作为血管系统中GTN生成NO的指标。我们得出结论,GTN耐受性与从GTN生成NO的能力降低相关。应注意使用MAP降低来评估耐受性,因为即使在耐受性动物中,高指示剂剂量也可能释放出足够量的NO以引起最大MAP降低。

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