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Genetic Variations in ABCB1 and CYP3A5 as well as Sex Influence Quinine Disposition Among Ugandans

机译:乌干达人中ABCB1和CYP3A5的遗传变异以及性别影响奎宁的分布

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Quinine is one of the most effective antimalarial drugs, although its clinical use is limited as a result of its narrow safety margin. Quinine is a substrate of the polymorphic p-glycoprotein and CYP3A4/3A5. This study aimed to examine the effects of genetic variations in ABCB1 and CYP3A5 genes, sex, demographic, and biochemical variables (serum albumin, creatinine, alanine amino-transferase and albumin) on quinine disposition among Ugandans. Quinine (600 mg) was orally administered to 140 healthy volunteers. Quinine and its metabolite 3-hydroxyquinine concentrations were determined from 16-hour postdose plasma by high-performance liquid chromatography. CYP3A5 activity was measured using quinine/3-hydroxyquinine ratio (metabolic ratio). Genotyping for a total of 20 single nucleotide polymorphisms in ABCB1 (n = 13) and CYP3A5 (n = 7) was done using Taqman and minisequencing on microarray. There were 20.5- and 13-fold variations in body weight-adjusted plasma quinine concentrations (mean +- standard deviation, 5.26 +- 2.5 |xmol/L; range, 0.88-18.10 mumol/L) and quinine-to-3-hydroxyquinine metabolic ratio (mean +- standard deviation, 7.68 +-3.3 |xmol/L; range, 1.66-22.3 mumol/L), respectively. Weight-adjusted plasma quinine concentration was significantly influenced by sex and ABCB1 haplotype. There was a significant sex difference in quinine metabolic ratio, women being faster metabolizers than men (P = 0.01). CYP3A5 genotype/haplotype significantly (P = 0.03) influenced quinine disposition with a clear CYP3A5*! gene dose effect. The result confirms that quinine disposition is influenced mainly by sex as well as by ABCB1 and CYP3A5 genotypes. Despite being fast metabolizers, women display higher quinine bioavailability than men in Uganda. This may have clinical significance in determining an individual's susceptibility to quinine-associated adverse reactions such as cinchonism.
机译:奎宁是最有效的抗疟药之一,尽管由于其安全范围狭窄,其临床用途受到限制。奎宁是多态性p-糖蛋白和CYP3A4 / 3A5的底物。这项研究旨在检查ABCB1和CYP3A5基因的遗传变异,性别,人口统计学和生化变量(血清白蛋白,肌酐,丙氨酸氨基转移酶和白蛋白)对乌干达人奎宁配置的影响。向140名健康志愿者口服奎宁(600毫克)。在给药后16小时血浆中通过高效液相色谱法测定奎宁及其代谢物3-羟基奎宁的浓度。使用奎宁/ 3-羟基奎宁比(代谢比)测量CYP3A5活性。使用Taqman和微阵列微测序对ABCB1(n = 13)和CYP3A5(n = 7)中总共20个单核苷酸多态性进行基因分型。体重调整后的血浆奎宁浓度(平均值±标准偏差为5.26±2.5 | xmol / L;范围为0.88-18.10 mumol / L)和奎宁--3-羟基奎宁分别有20.5和13倍的变化代谢率(平均值±标准偏差,7.68±-3.3 | xmol / L;范围,1.66-22.3 mumol / L)。性别和ABCB1单倍型显着影响了体重调节血浆奎宁浓度。奎宁代谢率存在明显的性别差异,女性比男性的代谢更快(P = 0.01)。 CYP3A5的基因型/单倍型显着(P = 0.03)通过清晰的CYP3A5 *影响奎宁的分布!基因剂量效应。结果证实,奎宁的配置主要受性别以及ABCB1和CYP3A5基因型的影响。尽管是快速代谢者,但乌干达妇女的奎宁生物利用度比男子高。这可能对确定个人对奎宁相关不良反应(例如辛琴痛)的敏感性具有临床意义。

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