Center of Molecular Diagnostics and Personalized Medicine, Department of Basic Sciences, Division of Health Sciences, University of Monterrey, San Pedro Garza Garcia, Nuevo Leon, Mexico.
Vitagenesis S.A., Monterrey, Nuevo Leon, Mexico.
Sci Rep. 2020 Jun 1;10(1):8900. doi: 10.1038/s41598-020-65843-y.
Atorvastatin (ATV) is a blood cholesterol-lowering drug used to prevent cardiovascular events, the leading cause of death worldwide. As pharmacokinetics, metabolism and response vary among individuals, we wanted to determine the most reliable metabolic ATV phenotypes and identify novel and preponderant genetic markers that affect ATV plasma levels. A controlled, randomized, crossover, single-blind, three-treatment, three-period, and six-sequence clinical study of ATV (single 80-mg oral dose) was conducted among 60 healthy Mexican men. ATV plasma levels were measured using high-performance liquid chromatography mass spectrometry. Genotyping was performed by real-time PCR with TaqMan probes. Four ATV metabolizer phenotypes were found: slow, intermediate, normal and fast. Six gene polymorphisms, SLCO1B1-rs4149056, ABCB1-rs1045642, CYP2D6-rs1135840, CYP2B6-rs3745274, NAT2-rs1208, and COMT- rs4680, had a significant effect on ATV pharmacokinetics (P < 0.05). The polymorphisms in SLCO1B1 and ABCB1 seemed to have a greater effect and were especially important for the shift from an intermediate to a normal metabolizer. This is the first study that demonstrates how the interaction of genetic variants affect metabolic phenotyping and improves understanding of how SLCO1B1 and ABCB1 variants that affect statin metabolism may partially explain the variability in drug response. Notwithstanding, the influence of other genetic and non-genetic factors is not ruled out.
阿托伐他汀(ATV)是一种降低血液胆固醇的药物,用于预防心血管事件,这是全球死亡的主要原因。由于个体之间的药代动力学、代谢和反应各不相同,我们希望确定最可靠的代谢 ATV 表型,并确定影响 ATV 血浆水平的新的和主要的遗传标志物。对 60 名健康墨西哥男性进行了阿托伐他汀(单次 80mg 口服剂量)的对照、随机、交叉、单盲、三治疗、三周期和六序列临床研究。采用高效液相色谱-质谱法测定 ATV 血浆水平。采用 TaqMan 探针实时 PCR 进行基因分型。发现了四种 ATV 代谢表型:慢、中、正常和快。SLCO1B1-rs4149056、ABCB1-rs1045642、CYP2D6-rs1135840、CYP2B6-rs3745274、NAT2-rs1208 和 COMT-rs4680 六个基因多态性对 ATV 药代动力学有显著影响(P<0.05)。SLCO1B1 和 ABCB1 中的多态性似乎影响更大,对于从中等代谢型转变为正常代谢型尤为重要。这是第一项表明遗传变异如何相互作用影响代谢表型的研究,并提高了对影响他汀类药物代谢的 SLCO1B1 和 ABCB1 变异如何部分解释药物反应变异性的理解。尽管如此,不能排除其他遗传和非遗传因素的影响。