Tron Camille, Bouvet Régis, Verdier Marie-Clémence, Lamoureux Fabien, Hennart Benjamin, Dubourg Christèle, Bellissant Eric, Galibert Marie-Dominique
Pharmacology Department, CHU Rennes, Inserm, EHESP, Irset (Institut de Recherche en Santé, Environnement et Travail)-UMR_S 1085, Univ Rennes, F-35000 Rennes, France.
Department of Molecular Genetics and Genomics, Rennes Hospital University, F-35000 Rennes, France.
Pharmaceuticals (Basel). 2022 May 22;15(5):637. doi: 10.3390/ph15050637.
In the field of pharmacogenetics, the trend is to analyze a panel of several actionable genetic polymorphisms. It may require the use of high-throughput sequencing which demands expensive reagents/instruments and specific skills to interpret results. As an alternative, the aim of this work was to validate an easy, fast, and inexpensive multiplex pharmacogenetics assay to simultaneously genotype a panel of 17 clinically actionable variants involved in drug pharmacokinetics/pharmacodynamics. We designed primers to perform a multiplex PCR assay using a single mix. Primers were labeled by two fluorescent dye markers to discriminate alleles, while the size of the PCR fragments analyzed by electrophoresis allowed identifying amplicon. Polymorphisms of interest were CYP3A422, CYP3A53, CYP1A21F, CYP2C92-3, CYP2C192-*3-17, VKORC1-1639G > A, ABCB1 rs1045642-rs1128503-rs2229109-rs2032582, and CYP2D63-*4-*6-*9. The assay was repeatable and a minimum quantity of 10 ng of DNA/ sample was needed to obtain accurate results. The method was applied to a validation cohort of 121 samples and genotyping results were consistent with those obtained with reference methods. The assay was fast and cost-effective with results being available within one working-day. This robust assay can easily be implemented in laboratories as an alternative to cumbersome simplex assays or expensive multiplex approaches. Together it should widespread access to pharmacogenetics in clinical routine practice.
在药物遗传学领域,目前的趋势是分析一组多个可用于指导治疗的基因多态性。这可能需要使用高通量测序技术,而该技术需要昂贵的试剂/仪器以及解读结果的特定技能。作为一种替代方法,本研究的目的是验证一种简便、快速且经济的多重药物遗传学检测方法,以同时对一组涉及药物药代动力学/药效学的17个临床可操作变异进行基因分型。我们设计了引物,使用单一混合液进行多重PCR检测。引物用两种荧光染料标记来区分等位基因,而通过电泳分析的PCR片段大小可用于识别扩增子。感兴趣的多态性包括CYP3A422、CYP3A53、CYP1A21F、CYP2C92-3、CYP2C192-*3-17、VKORC1-1639G>A、ABCB1 rs1045642-rs1128503-rs2229109-rs2032582以及CYP2D63-*4-*6-*9。该检测方法具有可重复性,每个样本至少需要10 ng DNA才能获得准确结果。该方法应用于121个样本的验证队列,基因分型结果与参考方法获得的结果一致。该检测方法快速且具有成本效益,一个工作日内即可获得结果。这种可靠的检测方法可以很容易地在实验室中实施,作为繁琐的单重检测或昂贵的多重检测方法的替代方法。总之,它应能在临床常规实践中广泛应用药物遗传学检测。