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首页> 外文期刊>Therapeutic Drug Monitoring >Stereoselective disposition of the antiarrhythmic agent mexiletine during the concomitant administration of caffeine.
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Stereoselective disposition of the antiarrhythmic agent mexiletine during the concomitant administration of caffeine.

机译:咖啡因的同时给药期间,抗心律不齐药美西律的立体选择性处置。

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摘要

Caffeine consumption is extensive in industrialized countries and its role in drug-drug interactions is often overlooked. CYP1A2, the major cytochrome P450 isoform involved in the metabolism of caffeine, has also been implicated in the formation of N-hydroxymexiletine, the major metabolite of mexiletine. Therefore, the objective of this study was to assess the effects of a clinically relevant dosage of caffeine on the stereoselective disposition of mexiletine. Fourteen healthy volunteers--10 extensive metabolizers (EMs) and 4 poor metabolizers (PMs) of CYP2D6--received a single 200 mg oral dose of racemic mexiletine hydrochloride on two occasions (1 week apart): once by itself and once during administration of caffeine (100 mg four times daily). Serial blood and urine samples were collected and pharmacokinetic parameters were estimated. Although the total clearance of mexiletine was not significantly altered by the coadministration of caffeine in EMs and PMs, a stereoselective decrease (16% in EMs and 14% in PMs) in the urinary recovery of N-hydroxymexiletine from the R-(-)-enantiomer was observed. Also, the partial metabolic clearance of R-(-)-mexiletine to N-hydroxymexiletine glucuronide was reduced from 126 +/- 48 mL/min to 106 +/- 32 mL/min and 152.6 (73.4-196.2) mL/min to 109 (77-127) mL/min by the coadministration of caffeine in EMs and PMs, respectively. Consequently, the R/S ratio for urinary recovery and the partial metabolic clearance of mexiletine to N-hydroxymexiletine were 28% lower during the coadministration of caffeine. In conclusion, data obtained in this study indicate that coadministration of caffeine does not lead to clinically significant changes in mexiletine plasma concentrations. However, results obtained suggest that CYP1A2 is involved in the formation of N-hydroxymexiletine.
机译:在工业化国家中,咖啡因的消费量很大,在药物-药物相互作用中的作用经常被忽视。 CYP1A2是参与咖啡因代谢的主要细胞色素P450亚型,也与N-羟基美西律汀(美西律素的主要代谢物)的形成有关。因此,这项研究的目的是评估咖啡因的临床相关剂量对美西律立体定位的影响。十四名健康志愿者--10 CYP2D6的广泛代谢者(EMs)和4种弱代谢者(PMs)-分别接受200 mg口服消旋美西律盐酸盐口服剂量(两次,相隔1周):一次单独给药,一次在给药期间咖啡因(每天四次100毫克)。收集连续的血液和尿液样本,并估算药代动力学参数。尽管在咖啡因和PM中并用咖啡因不会明显改变美西律汀的总清除率,但尿中从R-(-)观察到对映体。同样,R-(-)-美西律对N-羟基美西律葡糖苷酸的部分代谢清除率从126 +/- 48 mL / min降低至106 +/- 32 mL / min和152.6(73.4-196.2)mL / min EM和PM中咖啡因的共同给药分别为109(77-127)mL / min。因此,在咖啡因的共同给药过程中,尿恢复的R / S比和美西律对N-羟基美西律的部分代谢清除率降低了28%。总之,从这项研究中获得的数据表明,咖啡因的共同给药不会导致美西律汀血浆浓度的临床显着变化。然而,获得的结果表明CYP1A2参与了N-羟基美西律的形成。

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