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采用稳定同位素技术对硝酸甘油及其代谢产物在透皮硝酸甘油系统(Transderm-Nitro)、硝酸甘油贴片(Nitrodisc)和硝酸甘油缓释贴剂二代(Nitro-Dur II)中的比较药代动力学和生物利用度进行研究。

Comparative pharmacokinetics and bioavailability of nitroglycerin and its metabolites from Transderm-Nitro, Nitrodisc, and Nitro-Dur II systems using a stable-isotope technique.

作者信息

Sun J X, Piraino A J, Morgan J M, Joshi J C, Cipriano A, Chan K, Redalieu E

机构信息

Research Department, Ciba-Geigy Corporation, Ardsley, New York 10502, USA.

出版信息

J Clin Pharmacol. 1995 Apr;35(4):390-7. doi: 10.1002/j.1552-4604.1995.tb04079.x.

Abstract

The pharmacokinetics and bioavailability of nitroglycerin (GTN) and its metabolites, 1,2-glyceryl dinitrate (1,2-GDN) and 1,3-glyceryl dinitrate (1,3-GDN), were compared after a single 14-hour application of Transderm-Nitro (Ciba-Geigy, Summit, NJ), Nitrodisc (GD Searle, Chicago, IL), and Nitro-Dur II (Key Pharmaceuticals, Kenilworth, NJ) systems to 18 healthy male subjects on 3 separate occasions. A 14-hour intravenous infusion of 15N-labeled GTN was given simultaneously to correct for changes in systemic clearance during the application of each system. Plasma concentrations of 15N-labeled GTN, unlabeled GTN, and their corresponding dinitrate metabolites were measured using a gas chromatography/mass spectrometry method. Results showed that the plasma concentration profiles of nitroglycerin and its metabolites for the three systems were similar during and after system removal. Mean (SD) total amounts (AUCp x CLiv) of GTN transdermally available after adjustment for 15N-labeled GTN clearance were 5.3 (2.1), 5.3 (2.0), and 5.4 (2.6) mg for Transderm-Nitro, Nitrodisc, and Nitro-Dur II, respectively. Mean (SD) AUC values for 1,2-GDN were 44.6 (15.8), 44.3 (16.1), and 42.8 (19.3) ng.h/mL for the 3 systems. Corresponding AUC values for 1,3-GDN were 9.3 (2.9), 9.7 (2.9), and 8.7 (3.0) ng.h/mL. Statistical analysis of the log-transformed data based on 90% conventional confidence interval showed that all 3 systems delivered equivalent amounts of nitroglycerin into the systemic circulation. The AUC ratios for 1,3-GDN to GTN, but not 1,2-GDN to GTN, were statistically different for the intravenous and transdermal routes during all 3 system applications, indicating that the formation and metabolism of 1,3-GDN was dependent on route of administration.

摘要

在18名健康男性受试者身上,分3次在不同时间分别单次使用Transderm-Nitro(汽巴-嘉基公司,新泽西州萨米特)、Nitrodisc(GD Searle公司,伊利诺伊州芝加哥)和Nitro-Dur II(Key Pharmaceuticals公司,新泽西州肯尼尔沃思)系统14小时后,比较了硝酸甘油(GTN)及其代谢产物1,2-二硝酸甘油酯(1,2-GDN)和1,3-二硝酸甘油酯(1,3-GDN)的药代动力学和生物利用度。在每次使用系统期间,同时给予14小时的15N标记GTN静脉输注,以校正全身清除率的变化。使用气相色谱/质谱法测量15N标记GTN、未标记GTN及其相应二硝酸酯代谢产物的血浆浓度。结果表明,在去除系统期间和之后,三种系统的硝酸甘油及其代谢产物的血浆浓度曲线相似。经15N标记GTN清除率校正后,Transderm-Nitro、Nitrodisc和Nitro-Dur II经皮可用的GTN平均(标准差)总量(AUCp×CLiv)分别为5.3(2.1)、5.3(2.0)和5.4(2.6)mg。三种系统的1,2-GDN平均(标准差)AUC值分别为44.6(15.8)、44.3(16.1)和42.8(19.3)ng·h/mL。1,3-GDN的相应AUC值分别为9.3(2.9)、9.7(2.9)和8.7(3.0)ng·h/mL。基于90%传统置信区间对对数转换数据进行的统计分析表明,所有三种系统向体循环输送的硝酸甘油量相当。在所有三种系统应用期间,静脉内和经皮途径的1,3-GDN与GTN的AUC比值存在统计学差异,但1,2-GDN与GTN的AUC比值不存在统计学差异,这表明1,3-GDN的形成和代谢取决于给药途径。

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