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Miotic Action of Tramadol is Determined by CYP2D6 Genotype

机译:曲马多的拟态作用由CYP2D6基因型决定

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Polymorphic CYP2D6 is the enzyme that activates the opioid analgesic tramadol by O-demethylation to its active metabolite O-demethyltramadol (M1). Our objective was to determine the opioid effects measured by pupillary response to tramadol of CYP2D6 genotyped volunteers in relation to the disposition of tramadol and M1 in plasma. Tramadol displayed phenotypic pharmacokinetics and it was possible to identify poor metabolizers (PM) with >99 % confidence from the metabolic ratio (MR) in a single blood sample taken between 2.5 and 24 h post-dose. Homozygous extensive metabolizers (EM) differed from PM subjects by an almost threefold greater (P=0.0014) maximal pupillary constriction (Emax). Significant correlations between the AUC and Cmax values of M1 versus pupillary constriction were found. The corresponding correlations of pharmacokinetic parameters for tramadol itself were weaker and negative. The strongest correlations were for the single-point metabolic ratios at all sampling intervals versus the effects, with rs ranging from 0.85 to 0.89 (p<.01). It is concluded that the concept of dual opioidon-opioid action of the drug, though considerably stronger in EMs, is valid for both EM and PM subjects. This is the theoretical basis for the frequent use and satisfactory efficacy of tramadol in clinical practice when given to genetically non-selected population.
机译:CYP2D6多态性是通过O-去甲基化成其活性代谢产物O-去甲基曲马多(M1)来激活阿片类镇痛曲马多的酶。我们的目的是确定通过CYP2D6基因型志愿者对tramadol的瞳孔反应所测出的阿片样物质作用与血浆中tramadol和M1的关系。曲马多表现出表型药代动力学,并且可以在服药后2.5至24小时内从单一血样中的代谢率(MR)鉴定出代谢率(PM)> 99%的置信度。纯合子广泛代谢者(EM)与PM受试者的最大瞳孔收缩(Emax)差了将近三倍(P = 0.0014)。发现M1的AUC和Cmax值与瞳孔收缩之间存在显着相关性。曲马多本身的药代动力学参数的相关性较弱且为负。最强的相关性是在所有采样间隔的单点代谢率与效应之间的相关性,rs的范围为0.85至0.89(p <.01)。结论是,该药物的双重阿片/非阿片类药物作用的概念,尽管在EMs中要强得多,但对EM和PM受试者均有效。这是给予非遗传选择人群曲马多在临床实践中经常使用和令人满意的疗效的理论基础。

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