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[高尿酸血症的治疗研究——别嘌醇与氧嘌呤醇的疗效及动力学]

[A study on treatment of hyperuricemia--effects and kinetics of allopurinol and oxipurinol].

作者信息

Hosoya T, Ichida K, Tabe A, Sakai O

机构信息

Second Department of Medicine, Jikei University School of Medicine, Tokyo.

出版信息

Ryumachi. 1991 Feb;31(1):28-35.

PMID:1857993
Abstract

In order to study the effects and pharmacokinetics of allopurinol (hereafter abbreviated to allo.) and oxipurinol (hereafter abbreviated to oxi.) six normal human subjects were given a single oral dose of either allo. (300mg) or oxi. (600mg), followed by serial determinations of serum and urinary levels of allo., oxi., uric acid, hypoxanthine (hereafter abbreviated to hx.) and xanthine (hereafter abbreviated x.) over a six-hour period. With a dose of 300mg of allo. or 600mg of oxi., the patterns of serum uric acid were similar. When 300mg of allo. was given, however, a reduction in the serum uric acid level occurred earlier. Additionally, it was found that urinary excretion of oxi. generally paralleled the plasma concentration. Allo. administration resulted in rises in plasma concentration of x., and urinary excretion of x. and hx. Oxi. administration, on the other hand, did not cause significant changes in the plasma content of x. or urinary excretory volume of hx. Only a slight increase was noted in the amount of x. excreted in the urine. When allo. was compared against oxi., pharmacokinetics of oxypurines, especially x. were found to differ markedly. The results suggested that differences in the reaction sites, varied intra- and extra-cellular distributions of allo. and oxi., and different effects on purine biosynthesis contribute to the aforementioned discrepancies.

摘要

为研究别嘌醇(以下简称别嘌)和氧嘌呤醇(以下简称氧嘌)的作用及药代动力学,对6名正常受试者单次口服给予别嘌(300mg)或氧嘌(600mg),随后在6小时内连续测定血清及尿液中别嘌、氧嘌、尿酸、次黄嘌呤(以下简称次黄)和黄嘌呤(以下简称黄嘌)的水平。给予300mg别嘌或600mg氧嘌时,血清尿酸的变化模式相似。然而,给予300mg别嘌时,血清尿酸水平下降出现得更早。此外,还发现氧嘌的尿排泄一般与血浆浓度平行。给予别嘌会导致黄嘌的血浆浓度升高,以及黄嘌和次黄的尿排泄增加。另一方面,给予氧嘌不会引起黄嘌的血浆含量或次黄的尿排泄量发生显著变化。仅观察到尿中黄嘌排泄量有轻微增加。当比较别嘌与氧嘌时,发现氧嘌呤的药代动力学,尤其是黄嘌的药代动力学有显著差异。结果表明,反应部位的差异、别嘌和氧嘌在细胞内和细胞外的分布不同,以及对嘌呤生物合成的不同影响,导致了上述差异。

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