首页> 美国卫生研究院文献>PLoS Clinical Trials >Drug Metabolism in Human Brain: High Levels of Cytochrome P4503A43 in Brain and Metabolism of Anti-Anxiety Drug Alprazolam to Its Active Metabolite
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Drug Metabolism in Human Brain: High Levels of Cytochrome P4503A43 in Brain and Metabolism of Anti-Anxiety Drug Alprazolam to Its Active Metabolite

机译:人脑中的药物代谢:脑中高水平的细胞色素P4503A43和抗焦虑药阿普唑仑对其活性代谢物的代谢

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摘要

Cytochrome P450 (P450) is a super-family of drug metabolizing enzymes. P450 enzymes have dual function; they can metabolize drugs to pharmacologically inactive metabolites facilitating their excretion or biotransform them to pharmacologically active metabolites which may have longer half-life than the parent drug. The variable pharmacological response to psychoactive drugs typically seen in population groups is often not accountable by considering dissimilarities in hepatic metabolism. Metabolism in brain specific nuclei may play a role in pharmacological modulation of drugs acting on the CNS and help explain some of the diverse response to these drugs seen in patient population. P450 enzymes are also present in brain where drug metabolism can take place and modify therapeutic action of drugs at the site of action. We have earlier demonstrated an intrinsic difference in the biotransformation of alprazolam (ALP) in brain and liver, relatively more α-hydroxy alprazolam (α-OHALP) is formed in brain as compared to liver. In the present study we show that recombinant CYP3A43 metabolizes ALP to both α-OHALP and 4-hydroxy alprazolam (4-OHALP) while CYP3A4 metabolizes ALP predominantly to its inactive metabolite, 4-OHALP. The expression of CYP3A43 mRNA in human brain samples correlates with formation of relatively higher levels of α-OH ALP indicating that individuals who express higher levels of CYP3A43 in the brain would generate larger amounts of α-OHALP. Further, the expression of CYP3A43 was relatively higher in brain as compared to liver across different ethnic populations. Since CYP3A enzymes play a prominent role in the metabolism of drugs, the higher expression of CYP3A43 would generate metabolite profile of drugs differentially in human brain and thus impact the pharmacodynamics of psychoactive drugs at the site of action.
机译:细胞色素P450(P450)是药物代谢酶的超家族。 P450酶具有双重功能。它们可以将药物代谢为无药理活性的代谢产物,从而促进其排泄,或者将它们生物转化为药理活性的代谢产物,其半衰期比母体药物更长。通常无法通过考虑肝代谢的差异来解释人群中常见的对精神活性药物的不同药理反应。脑特定核中的代谢可能在作用于中枢神经系统的药物的药理学调节中起作用,并有助于解释在患者人群中对这些药物的某些不同反应。 P450酶也存在于大脑中,在大脑中会发生药物代谢并在作用部位改变药物的治疗作用。我们之前已经证明了阿普唑仑(ALP)在大脑和肝脏的生物转化方面存在内在差异,与肝脏相比,在大脑中形成的α-羟基阿普唑仑(α-OHALP)相对较多。在本研究中,我们显示重组CYP3A43将ALP代谢为α-OHALP和4-羟基阿普唑仑(4-OHALP),而CYP3A4主要将ALP代谢为其无活性代谢物4-OHALP。 CYP3A43 mRNA在人脑样品中的表达与较高水平的α-OHALP的形成有关,这表明在大脑中表达较高水平CYP3A43的个体将产生大量的α-OHALP。此外,在不同种族人群中,与肝脏相比,CYP3A43在脑中的表达相对较高。由于CYP3A酶在药物代谢中起着重要作用,因此CYP3A43的高表达将在人脑中产生差异的药物代谢谱,从而影响作用部位的精神活性药物的药效学。

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