首页> 美国卫生研究院文献>Molecular Pharmacology >The Ability of Bacterial Cocaine Esterase to Hydrolyze Cocaine Metabolites and Their Simultaneous Quantification Using High-Performance Liquid Chromatography-Tandem Mass Spectrometry
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The Ability of Bacterial Cocaine Esterase to Hydrolyze Cocaine Metabolites and Their Simultaneous Quantification Using High-Performance Liquid Chromatography-Tandem Mass Spectrometry

机译:高效液相色谱-串联质谱法分析细菌可卡因酯酶水解可卡因代谢物的能力及其同时定量

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摘要

Cocaine toxicity is a widespread problem in the United States, responsible for more than 500,000 emergency department visits a year. There is currently no U.S. Food and Drug Administration-approved pharmacotherapy to directly treat cocaine toxicity. To this end, we have developed a mutant bacterial cocaine esterase (DM-CocE), which has been previously shown to rapidly hydrolyze cocaine into inert metabolites, preventing and reversing toxicity with limited immunogenic potential. Herein we describe the ability of DM-CocE to hydrolyze the active cocaine metabolites norcocaine and cocaethylene and its inability to hydrolyze benzoylecgonine. DM-CocE hydrolyzes norcocaine and cocaethylene with 58 and 45% of its catalytic efficiency for cocaine in vitro as measured by a spectrophotometric assay. We have developed a mass spectrometry method to simultaneously detect cocaine, benzoylecgonine, norcocaine, and ecgonine methyl ester to quantify the effect of DM-CocE on normal cocaine metabolism in vivo. DM-CocE administered to rats 10 min after a convulsant dose of cocaine alters the normal metabolism of cocaine, rapidly decreasing circulating levels of cocaine and norcocaine while increasing ecgonine methyl ester formation. Benzoylecgonine was not hydrolyzed in vivo, but circulating concentrations were reduced, suggesting that DM-CocE may bind and sequester this metabolite. These findings suggest that DM-CocE may reduce cocaine toxicity by eliminating active and toxic metabolites along with the parent cocaine molecule.
机译:可卡因毒性在美国是一个普遍存在的问题,每年负责超过500,000次急诊就诊。目前,尚无美国食品药品监督管理局(FDA)批准的直接治疗可卡因毒性的药物疗法。为此,我们开发了一种突变型细菌可卡因酯酶(DM-CocE),该酶先前已显示可将可卡因迅速水解成惰性代谢产物,以有限的免疫原性潜力预防和逆转毒性。本文中,我们描述了DM-CocE水解活性可卡因代谢产物降可卡因和可卡乙烯的能力,以及其无法水解苯甲酰芽子碱的能力。 DM-CocE可以通过分光光度法测定其水解可卡因的58和45%的催化效率,从而可水解去甲可卡因和可卡乙烯。我们已经开发了一种质谱分析方法,可同时检测可卡因,苯甲酰芽子碱,降冰片碱和芽子碱甲酯,以量化DM-CocE对体内正常可卡因代谢的影响。惊厥剂量的可卡因给药后10分钟,对大鼠施用DM-CocE会改变可卡因的正常代谢,迅速降低可卡因和去甲可卡因的循环水平,同时增加芽子碱甲酯的形成。苯甲酰芽子碱在体内没有被水解,但是循环浓度降低了,这表明DM-CocE可以结合并隔离这种代谢物。这些发现表明,DM-CocE可以通过消除活性和有毒代谢物以及母体可卡因分子来降低可卡因的毒性。

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