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西利洛尔的药物基因组学——P-糖蛋白和有机阴离子转运多肽 1A2 在西利洛尔药代动力学中的作用证据。

Pharmacogenomics of celiprolol - evidence for a role of P-glycoprotein and organic anion transporting polypeptide 1A2 in celiprolol pharmacokinetics.

机构信息

Department of Clinical Pharmacology, University of Helsinki, Helsinki, Finland.

Individualized Drug Therapy Research Program, Faculty of Medicine, University of Helsinki, Helsinki, Finland.

出版信息

Clin Transl Sci. 2022 Feb;15(2):409-421. doi: 10.1111/cts.13159. Epub 2021 Sep 29.

Abstract

The aim of this study was to search for associations of genetic variants with celiprolol pharmacokinetics in a large set of pharmacokinetic genes, and, more specifically, in a set of previously identified candidate genes ABCB1, SLCO1A2, and SLCO2B1. To this end, we determined celiprolol single-dose (200 mg) pharmacokinetics and sequenced 379 pharmacokinetic genes in 195 healthy volunteers. Analysis with 46,064 common sequence variants in the 379 genes did not identify any novel genes associated with celiprolol exposure. The candidate gene analysis showed that the ABCB1 c.3435T>C and c.2677T/G>A, and the SLCO1A2 c.516A>C variants were associated with reduced celiprolol area under the plasma concentration-time curve (AUC ). An alternative analysis with ABCB1 haplotypes showed that, in addition to SLCO1A2 c.516A>C, three ABCB1 haplotypes were associated with reduced celiprolol AUC . A genotype scoring system was developed based on these variants and applied to stratify the participants to low and high celiprolol exposure genotype groups. The mean AUC of celiprolol in the low exposure genotype group was 55% of the mean AUC in the high exposure group (p = 1.08 × 10 ). In addition, the results showed gene-gene interactions in the effects of SLCO1A2 and ABCB1 variants on celiprolol AUC (p < 5 × 10 ) suggesting an interplay between organic anion transporting polypeptide 1A2 and P-glycoprotein in celiprolol absorption. Taken together, these data indicate that P-glycoprotein and organic anion transporting polypeptide 1A2 play a role in celiprolol pharmacokinetics. Furthermore, patients with ABCB1 and SLCO1A2 genotypes associated with low celiprolol exposure may have an increased risk of poor blood-pressure lowering response to celiprolol.

摘要

本研究旨在寻找遗传变异与西洛他唑药代动力学之间的关联,特别是在一组先前确定的候选基因 ABCB1、SLCO1A2 和 SLCO2B1 中。为此,我们测定了 195 名健康志愿者单次服用(200mg)西洛他唑的药代动力学,并对 379 个药代动力学基因进行测序。在 379 个基因的 46064 个常见序列变异体分析中,未发现任何与西洛他唑暴露相关的新基因。候选基因分析显示,ABCB1 c.3435T>C 和 c.2677T/G>A 以及 SLCO1A2 c.516A>C 变异与西洛他唑的药代动力学曲线下面积(AUC)降低有关。ABCB1 单倍型的替代分析表明,除了 SLCO1A2 c.516A>C,三个 ABCB1 单倍型与西洛他唑 AUC 降低有关。基于这些变体开发了一种基因型评分系统,并将其应用于将参与者分层为低和高西洛他唑暴露基因型组。低暴露基因型组的西洛他唑 AUC 平均值为高暴露基因型组的 55%(p=1.08×10-9)。此外,结果表明 SLCO1A2 和 ABCB1 变体对西洛他唑 AUC 的影响存在基因-基因相互作用(p<5×10-9),提示有机阴离子转运多肽 1A2 和 P-糖蛋白在西洛他唑吸收中相互作用。综上所述,这些数据表明 P-糖蛋白和有机阴离子转运多肽 1A2 在西洛他唑的药代动力学中发挥作用。此外,ABCB1 和 SLCO1A2 基因型与西洛他唑低暴露相关的患者可能有增加的风险对西洛他唑降压反应不佳。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caa4/8841435/f7ef8834d578/CTS-15-409-g001.jpg

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