Clinical Pharmacology Department, Hospital Universitario de la Princesa, Instituto Teofilo Hernando, Instituto de Investigacion Sanitaria Princesa (IP), Madrid, Spain.
UICEC Hospital Universitario de la Princesa, Plataforma SCReN (Spanish Clinical Reseach Network), Instituto de Investigacion Sanitaria la Princesa (IP), Madrid, Spain.
Basic Clin Pharmacol Toxicol. 2018 Oct;123(4):474-485. doi: 10.1111/bcpt.13031. Epub 2018 Jun 13.
P-glycoprotein, encoded by ABCB1, is an ATP-dependent drug efflux pump which exports substances outside the cell. Some studies described connections between C3435T polymorphism T allele and lower P-glycoprotein expression; therefore, homozygous T/T could show higher plasma levels. Our aim was to evaluate the effect of C3435T on pharmacokinetics of 4 antipsychotics (olanzapine, quetiapine, risperidone and aripiprazole) and 4 antidepressants (trazodone, sertraline, agomelatine and citalopram). The study included 473 healthy volunteers receiving a single oral dose of one of these drugs, genotyped by real-time PCR. Multivariate analysis was performed to adjust the effect of sex and genotype of the main cytochrome P450 enzymes. C3435T polymorphism had an effect on olanzapine pharmacokinetics, as T/T individuals showed lower clearance and volume of distribution. T/T individuals showed lower T of 9-OH-risperidone, but this difference disappeared after multivariate correction. T/T homozygous individuals showed lower dehydro-aripiprazole and trazodone area under the concentration-time curve, along with lower half-life and higher clearance of trazodone. C/T genotype was associated to higher citalopram maximum concentration. C3435T had no effect on quetiapine, sertraline or agomelatine pharmacokinetics. C3435T can affect the elimination of some drugs in different ways. Regarding risperidone, trazodone and dehydro-aripiprazole, we observed enhanced elimination while it was reduced in olanzapine and citalopram. However, in quetiapine, aripiprazole, sertraline and agomelatine, no changes were detected. These results suggest that P-glycoprotein polymorphisms could affect CNS drugs disposition, but the genetic factor that alters its activity is still unknown. This fact leads to consider the analysis of ABCB1 haplotypes instead of individual variants.
P-糖蛋白(P-glycoprotein)由 ABCB1 编码,是一种依赖于 ATP 的药物外排泵,可将物质排出细胞外。一些研究描述了 C3435T 多态性 T 等位基因与 P-糖蛋白表达降低之间的联系;因此,纯合 T/T 可能表现出更高的血浆水平。我们的目的是评估 C3435T 对 4 种抗精神病药物(奥氮平、喹硫平、利培酮和阿立哌唑)和 4 种抗抑郁药(曲唑酮、舍曲林、阿戈美拉汀和西酞普兰)药代动力学的影响。该研究纳入了 473 名健康志愿者,他们接受了这些药物中的一种的单口服剂量,并通过实时 PCR 进行基因分型。多变量分析用于调整主要细胞色素 P450 酶的性别和基因型的影响。C3435T 多态性对奥氮平的药代动力学有影响,因为 T/T 个体的清除率和分布容积较低。T/T 个体的 9-OH-利培酮 T 较低,但在多变量校正后这种差异消失。T/T 纯合子个体的去氢阿立哌唑和曲唑酮 AUC 较低,同时曲唑酮半衰期较短,清除率较高。C/T 基因型与西酞普兰最大浓度升高相关。C3435T 对喹硫平、舍曲林或阿戈美拉汀的药代动力学没有影响。C3435T 可以以不同的方式影响一些药物的消除。对于利培酮、曲唑酮和去氢阿立哌唑,我们观察到消除增强,而奥氮平和西酞普兰则减少。然而,在喹硫平、阿立哌唑、舍曲林和阿戈美拉汀中,没有发现变化。这些结果表明,P-糖蛋白多态性可能会影响中枢神经系统药物的分布,但改变其活性的遗传因素仍不清楚。这一事实导致考虑分析 ABCB1 单倍型而不是单个变体。