CYP2D6和CYP3A4/5基因型频率及其等位基因翻译和表型转化预测酶活性对沙特自闭症儿童利培酮药代动力学的影响

IF 2.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Sireen Abdul Rahim Shilbayeh, Iman Sharaf Adeen, Ayman Shawqi Alhazmi, Samah Fathy Ibrahim, Fawwaz Abdul Razaq Al Enazi, Ezzeldeen Hasan Ghanem, Adel Mohammed Binduraihem
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引用次数: 0

摘要

关于CYP2D6和CYP3A4/5多态性在儿童利培酮(RIS)药代动力学(PK)中的作用的数据相对有限且不一致。这部分是由于CYP2D6和CYP3A4/5代谢表型的覆盖范围有限,特别是那些代谢不良和超快速代谢(pm和UMs)的人群,这导致人们呼吁对非欧洲背景的人群进行研究,这些人群可能携带在欧洲人中不太常见的变异。研究人员从沙特阿拉伯利雅得的三个自闭症中心招募了年龄≤18岁、接受了至少8周ris治疗方案的儿童。测量的主要结果是RIS和9-羟基利培酮(9-OH-RIS)的血浆浓度及其剂量调整(C/D)比率作为表型和活动评分(as)的函数。为了准确的DNA基因分型,使用Axiom PharmacoFocus阵列进行靶向药物基因组学测试,通过检查针对CYP2D6和CYP3A4/5变体的广泛问题集。研究了基因型/表型的频率及其等位基因翻译和表型转化预测酶活性的影响。最后一组包括83人。我们人群中最常见的CYP2D6表型是正常代谢者(NMs, 66.3%)。与以往一些研究不一致的是,中间代谢物(IMs)、NMs和UMs三种表型在RIS浓度、RIS/9-OH-RIS比值、RIS C/D比值和9-OH-RIS C/D比值方面存在显著差异。经AS分析,两组患者RIS浓度(P = 0.013)、RIS/9-OH-RIS比值(P < 0.01)、RIS/9-OH-RIS比值(P < 0.01)差异均有统计学意义。CYP3A4/5星等位基因翻译的表型均未显示出对RIS PK参数的显著影响。值得注意的是,CYP2D6和CYP3A4/5表型均未显示出对总活性片段的显著影响,这表明其他基因变异可以调节RIS PK。该研究证实了先前报道的CYP2D6基因对RIS PK的部分影响。然而,未来的研究必须使用现代基因分型技术,针对其他候选基因的广泛变异,进一步研究它们对RIS PK和临床反应的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Frequency of CYP2D6 and CYP3A4/5 Genotypes and The Impact of Their Allele Translation and Phenoconversion-Predicted Enzyme Activity on Risperidone Pharmacokinetics in Saudi Children with Autism

The Frequency of CYP2D6 and CYP3A4/5 Genotypes and The Impact of Their Allele Translation and Phenoconversion-Predicted Enzyme Activity on Risperidone Pharmacokinetics in Saudi Children with Autism

Data on the role of CYP2D6 and CYP3A4/5 polymorphisms in relation to risperidone (RIS) pharmacokinetics (PK) in children are relatively limited and inconsistent. This is partially attributable to the limited coverage of CYP2D6 and CYP3A4/5 metabolizer phenotypes, particularly those of poor and ultrarapid metabolizers (PMs and UMs), which has led to calls for studies of populations with a non-European background that may carry variants that are less frequent in Europeans. Children ≤ 18 years old with at least 8 weeks of a RIS-based regimen were recruited from three autism centers in Riyadh, Saudi Arabia. The primary outcomes measured were plasma concentrations of RIS and 9-hydroxyrisperidone (9-OH-RIS) and their dose-adjusted (C/D) ratios as a function of phenotypes and activity score (AS). For accurate DNA genotyping, targeted pharmacogenomic testing with the Axiom PharmacoFocus Array was performed via examination of a broad collection of probesets targeting CYP2D6 and CYP3A4/5 variants. The frequency of genotypes/phenotypes and the impact of their allele translation and phenoconversion-predicted enzyme activity were examined. The final cohort included 83 individuals. The most common CYP2D6 phenotype in our population was normal metabolizers (NMs, 66.3%). Inconsistent with some previous studies, the three phenotypes of intermediate metabolizers (IMs), NMs, and UMs were significantly different in terms of RIS concentration, the RIS/9-OH-RIS ratio, the RIS C/D ratio and the 9-OH-RIS C/D ratio. According to AS analyses, there were statistically significant differences in the RIS concentration (P = 0.013), RIS/9-OH-RIS ratio (P < 0.001) and RIS C/D ratio (P = 0.030) when patients were categorized into AS ≤ 1 vs. AS > 1. None of the CYP3A4/5 star allele translated phenotypes revealed a significant influence on any of the RIS PK parameters. Notably, neither CYP2D6 nor CYP3A4/5 phenotyping demonstrated a significant impact on the total active moiety, suggesting that other gene variants could modulate RIS PK. The study confirmed the previously reported partial impact of the CYP2D6 gene on RIS PK. However, future studies using contemporary genotyping techniques targeting a wide range of variants in other candidate genes must be conducted to further examine their interactive effects on RIS PK and the clinical response.

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来源期刊
Biochemical Genetics
Biochemical Genetics 生物-生化与分子生物学
CiteScore
3.90
自引率
0.00%
发文量
133
审稿时长
4.8 months
期刊介绍: Biochemical Genetics welcomes original manuscripts that address and test clear scientific hypotheses, are directed to a broad scientific audience, and clearly contribute to the advancement of the field through the use of sound sampling or experimental design, reliable analytical methodologies and robust statistical analyses. Although studies focusing on particular regions and target organisms are welcome, it is not the journal’s goal to publish essentially descriptive studies that provide results with narrow applicability, or are based on very small samples or pseudoreplication. Rather, Biochemical Genetics welcomes review articles that go beyond summarizing previous publications and create added value through the systematic analysis and critique of the current state of knowledge or by conducting meta-analyses. Methodological articles are also within the scope of Biological Genetics, particularly when new laboratory techniques or computational approaches are fully described and thoroughly compared with the existing benchmark methods. Biochemical Genetics welcomes articles on the following topics: Genomics; Proteomics; Population genetics; Phylogenetics; Metagenomics; Microbial genetics; Genetics and evolution of wild and cultivated plants; Animal genetics and evolution; Human genetics and evolution; Genetic disorders; Genetic markers of diseases; Gene technology and therapy; Experimental and analytical methods; Statistical and computational methods.
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