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志愿者吸入一氧化氮过程中高铁血红蛋白和血清一氧化氮生成的动力学

Kinetics of methaemoglobin and serum nitrogen oxide production during inhalation of nitric oxide in volunteers.

作者信息

Young J D, Sear J W, Valvini E M

机构信息

Nuffield Department of Anaesthetics, Radcliffe Infirmary, Oxford.

出版信息

Br J Anaesth. 1996 May;76(5):652-6. doi: 10.1093/bja/76.5.652.

Abstract

Inhaled nitric oxide is used increasingly to treat pulmonary hypertension and ventilation/perfusion mismatching in seriously ill patients, but little is known of the pharmacokinetics of its two principal metabolites, methaemoglobin and nitrogen oxides (nitrates and nitrites). We have studied the changes in these metabolites in six healthy volunteers during and after 3 h inhalation of 100 volumes per million of nitric oxide. Mean nitric oxide uptake was 0.49 (SD 0.08) ml min-1 at standard temperature and pressure, corresponding to 74% of the inhaled dose. During inhalation, methaemoglobin increased monoexponentially with a time constant of 45.6 (11.1) min by 1.77 (0.47)% of total haemoglobin. Serum nitrogen oxides increased from 36.7 (7.6) to 124 (17) mumol litre-1, with a time constant of 172 (91.4) min and a volume of distribution of 331 (104) ml kg-1. The volume of distribution for methaemoglobin calculated from nitric oxide uptake and the increase in methaemoglobin, was, on average, 14.3% less than predicted blood volume, suggesting that most of the absorbed nitric oxide initially forms methaemoglobin. Serum nitrogen oxides declined initially after inhalation ceased but then increased to a second peak between 45 and 180 min later. The cause of the second peak was not determined.

摘要

吸入一氧化氮越来越多地用于治疗重症患者的肺动脉高压和通气/灌注不匹配,但对其两种主要代谢产物高铁血红蛋白和氮氧化物(硝酸盐和亚硝酸盐)的药代动力学了解甚少。我们研究了6名健康志愿者在吸入百万分之100体积的一氧化氮3小时期间及之后这些代谢产物的变化。在标准温度和压力下,一氧化氮的平均摄取量为0.49(标准差0.08)毫升/分钟,相当于吸入剂量的74%。吸入期间,高铁血红蛋白呈单指数增加,时间常数为45.6(11.1)分钟,占总血红蛋白的1.77(0.47)%。血清氮氧化物从36.7(7.6)微摩尔/升增加到124(17)微摩尔/升,时间常数为172(91.4)分钟,分布容积为331(104)毫升/千克。根据一氧化氮摄取量和高铁血红蛋白增加量计算出的高铁血红蛋白分布容积,平均比预测血容量少14.3%,这表明大部分吸收的一氧化氮最初形成高铁血红蛋白。吸入停止后,血清氮氧化物最初下降,但随后在45至180分钟后又增加到第二个峰值。第二个峰值的原因尚未确定。

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