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尿pH值对水杨酸及其甘氨酸和葡萄糖醛酸共轭物在人体药代动力学的影响。

Effect of urinary pH on the pharmacokinetics of salicylic acid, with its glycine and glucuronide conjugates in human.

作者信息

Vree T B, Van Ewijk-Beneken Kolmer E W, Verwey-Van Wissen C P, Hekster Y A

机构信息

Department of Clinical Pharmacy, Academic Hospital Nijmegen Sint Radboud, The Netherlands.

出版信息

Int J Clin Pharmacol Ther. 1994 Oct;32(10):550-8.

PMID:7834163
Abstract

We studied the effects of urinary pH on the kinetics of salicylic acid (SA) with its metabolites and assessed the contribution of alkaline hydrolysis of salicylic acid acyl glucuronide to the renal clearance of salicylic acid. Hydrolysis of SAAG in alkaline urine contributes marginally to the high renal clearance and excretion of salicylic acid, validating alkalinization of a patient with SA overdose. Under acidic urine conditions, salicylic acid (SA) had a terminal plasma t1/2 value of 3.29 +/- 0.52 hours while under alkaline urine conditions this t1/2 was significantly reduced to 2.50 +/- 0.41 hours (p = 0.0156). The total oral body clearance of salicylic acid under acidic conditions (1.38 +/- 0.43 l/h) is significantly lower than under alkaline urine conditions (2.27 +/- 0.83 l/h; p = 0.0410). The Km and Vmax values of SA, and its conjugates salicylic acid phenolic glucuronide (SAPG), salicyluric acid (SU) and salicyluric acid phenolic glucuronide (SUPG) did not differ statistically under acidic and alkaline urine conditions. The protein binding of SA was 93.8 +/- 1.0% and that of SU was 89.7 +/- 2.2% in vivo and in vitro. SUPG had a protein binding of 84.8 +/- 1.8%, while SAPG showed no protein binding at all. The renal excretion of salicylic acid depends strongly on the urinary pH. The percentage of the dose excreted unchanged increased from 2.3 +/- 1.5% under acidic conditions to 30.5 +/- 9.1% under alkaline conditions (p = 0.0006). Alkaline urine lowered by 50% the percentage of the dose excreted as SU (p = 0.0028), SAAG (p = 0.0013), and SUPG (p = 0.0296), while SAPG is only marginally lowered (p = 0.0589).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们研究了尿液pH值对水杨酸(SA)及其代谢产物动力学的影响,并评估了水杨酸酰基葡萄糖醛酸的碱性水解对水杨酸肾清除率的贡献。碱性尿液中SAAG的水解对水杨酸的高肾清除率和排泄贡献极小,这证实了对水杨酸过量患者进行碱化治疗的合理性。在酸性尿液条件下,水杨酸(SA)的终末血浆t1/2值为3.29±0.52小时,而在碱性尿液条件下,该t1/2显著降至2.50±0.41小时(p = 0.0156)。酸性条件下水杨酸的口服总体清除率(1.38±0.43 l/h)显著低于碱性尿液条件下(2.27±0.83 l/h;p = 0.0410)。在酸性和碱性尿液条件下,SA及其共轭物水杨酸酚葡萄糖醛酸(SAPG)、水杨尿酸(SU)和水杨尿酸酚葡萄糖醛酸(SUPG)的Km和Vmax值在统计学上无差异。体内和体外实验中,SA的蛋白结合率为93.8±1.0%,SU的为89.7±2.2%。SUPG的蛋白结合率为8,4.8±1.8%,而SAPG完全没有蛋白结合。水杨酸的肾排泄强烈依赖于尿液pH值。未改变排泄的剂量百分比从酸性条件下的2.3±1.5%增加到碱性条件下的30.5±9.1%(p = 0.0006)。碱性尿液使以SU(p = 0.0028)、SAAG(p = 0.0013)和SUPG(p = 0.0296)形式排泄的剂量百分比降低了50%,而SAPG仅略有降低(p = 0.0589)。(摘要截断于250字)

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