ANKK1/DRD2基因TaqIA多态性(rs1800497)与氟哌啶醇治疗的CYP2D6广泛性代谢障碍患者锥体外系副作用的严重程度相关。

Q2 Pharmacology, Toxicology and Pharmaceutics Drug metabolism and personalized therapy Pub Date : 2023-06-01 DOI:10.1515/dmpt-2022-0143
Andrey Alexandrovitch Kibitov, Elena Mikhaylovna Kiryanova, Ludmila Ivanovna Salnikova, Irina Vladimirovna Bure, Alexander Borisovitch Shmukler, Alexander Olegovitch Kibitov
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We conducted a 3-week prospective study to investigate the associations of ANKK1/DRD2 TaqIA (rs1800497), DRD2 -141C Ins/Del (rs1799732) polymorphisms and CYP2D6 metabolic phenotype on the efficacy of haloperidol treatment and severity of EPS in patients with schizophrenia spectrum disorders.</p><p><strong>Methods: </strong>In total, 57 inpatients with schizophrenia spectrum disorders (24 (42.1%)) females; age -46.7 (11.8) years (M(SD)) of European ancestry were enrolled. BARS and SAS scales were used to assess EPS. PANSS and CGI scales - to assess the efficacy of haloperidol treatment. Genotyping was performed by real-time PCR. CYP2D6 metabolic phenotype was predicted by the CYP2D6 *3, *4, *5, *6, *9, *10, *41 and xN genotypes.</p><p><strong>Results: </strong>Minor C allele of TaqIA was associated with higher scores of BARS (p=0.029) and SAS (p=0.024) on day 21 and minor Del allele of -141C Ins/Del - with more prominent clinical improvement by CGI scale (p=0.007) but not by PANSS. 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引用次数: 1

摘要

目的:锥体外系症状(EPS)是氟哌啶醇最显著的副作用之一。EPS严重程度的变异性可能与遗传因素有关,影响氟哌啶醇药代动力学(如CYP2D6)和药效学(如DRD2、ANKK1)。我们进行了一项为期3周的前瞻性研究,探讨ANKK1/DRD2 TaqIA (rs1800497)、DRD2 -141C Ins/Del (rs1799732)多态性和CYP2D6代谢表型与氟哌啶醇治疗疗效和精神分裂症谱系障碍患者EPS严重程度的关系。方法:共57例精神分裂症谱系障碍住院患者,其中女性24例(42.1%);年龄-46.7(11.8)岁(M(SD))的欧洲血统患者入组。EPS采用BARS和SAS量表进行评定。PANSS和CGI量表-评估氟哌啶醇治疗的疗效。采用实时荧光定量PCR进行基因分型。通过CYP2D6 *3、*4、*5、*6、*9、*10、*41和xN基因型预测CYP2D6代谢表型。结果:TaqIA的次要C等位基因与第21天的BARS (p=0.029)和SAS (p=0.024)评分较高相关;- 141c Ins/Del -的次要Del等位基因与CGI量表的临床改善更为显著相关(p=0.007),而与PANSS量表无关。这些差异仅在广泛的CYP2D6代谢物中观察到,尽管与代谢类型本身没有关联。一般线性模型显示,TaqIA基因型和代谢型组合与第21天的BARS评分显著相关(p=0.013)。结论:我们的研究结果强调了使用药代动力学和药效学遗传标记来预测氟哌啶醇治疗反应对个性化精神分裂症谱系障碍治疗的重要性。
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The ANKK1/DRD2 gene TaqIA polymorphism (rs1800497) is associated with the severity of extrapyramidal side effects of haloperidol treatment in CYP2D6 extensive metabolizers with schizophrenia spectrum disorders.

Objectives: Extrapyramidal symptoms (EPS) are one of the most prominent side effects of haloperidol. Variability of EPS severity may be associated with the genetic factors, affecting both haloperidol pharmacokinetics (e.g., CYP2D6) and pharmacodynamics (e.g., DRD2, ANKK1). We conducted a 3-week prospective study to investigate the associations of ANKK1/DRD2 TaqIA (rs1800497), DRD2 -141C Ins/Del (rs1799732) polymorphisms and CYP2D6 metabolic phenotype on the efficacy of haloperidol treatment and severity of EPS in patients with schizophrenia spectrum disorders.

Methods: In total, 57 inpatients with schizophrenia spectrum disorders (24 (42.1%)) females; age -46.7 (11.8) years (M(SD)) of European ancestry were enrolled. BARS and SAS scales were used to assess EPS. PANSS and CGI scales - to assess the efficacy of haloperidol treatment. Genotyping was performed by real-time PCR. CYP2D6 metabolic phenotype was predicted by the CYP2D6 *3, *4, *5, *6, *9, *10, *41 and xN genotypes.

Results: Minor C allele of TaqIA was associated with higher scores of BARS (p=0.029) and SAS (p=0.024) on day 21 and minor Del allele of -141C Ins/Del - with more prominent clinical improvement by CGI scale (p=0.007) but not by PANSS. These differences were observed only in extensive CYP2D6 metabolizers, although no associations with the metabolic type itself were found. General linear model showed that the combination of TaqIA genotype and metabolic type was significantly associated with BARS score on day 21 (p=0.013).

Conclusions: Our results highlight the importance of using both pharmacokinetic and pharmacodynamic genetic markers for predicting haloperidol treatment response to personalize schizophrenia spectrum disorders treatment.

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来源期刊
Drug metabolism and personalized therapy
Drug metabolism and personalized therapy Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
2.30
自引率
0.00%
发文量
35
期刊介绍: Drug Metabolism and Personalized Therapy (DMPT) is a peer-reviewed journal, and is abstracted/indexed in relevant major Abstracting Services. It provides up-to-date research articles, reviews and opinion papers in the wide field of drug metabolism research, covering established, new and potential drugs, environmentally toxic chemicals, the mechanisms by which drugs may interact with each other and with biological systems, and the pharmacological and toxicological consequences of these interactions and drug metabolism and excretion. Topics: drug metabolizing enzymes, pharmacogenetics and pharmacogenomics, biochemical pharmacology, molecular pathology, clinical pharmacology, pharmacokinetics and drug-drug interactions, immunopharmacology, neuropsychopharmacology.
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