首页> 外文期刊>Журнал аналитической химии >Application of gas chromatography with selective detection and gas chromatography-mass spectrometry to identifying Ketamine metabolites and to examining the conjugation of Ketamine and its metabolites in human and rat organisms
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Application of gas chromatography with selective detection and gas chromatography-mass spectrometry to identifying Ketamine metabolites and to examining the conjugation of Ketamine and its metabolites in human and rat organisms

机译:选择性检测和气相色谱 - 质谱法鉴定氯胺酮代谢产物及其在人和大鼠生物中克胺和代谢产物鉴定氯胺酮代谢物的应用

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摘要

The metabolism of the anesthetic Ketamine, 2-(2-chlorophenyl)-2-(methylamino)-cyclohexanone, in human and rat organisms was examined by gas chromatography with flame-ionization and nitrogen-phosphorus detection and by gas chromatography-mass spectrometry. The structure of new Ketamine metabolites (deaminonorketamine and its unsaturated analog, deamino-5,6--dehydronorketamine) was confirmed. The alternative structures of one of the metabolites were found to be 2-(2-chlorophenyl)-2-(methylamino)-cyclohex-3-ene-1- ol or 6-hydroxy-3,4-dehydronorketamine. The nature of conjugation of Ketamine and its metabolites was determined by the comparison of the results of acid and enzymatic hydrolysis. In human beings, the degree of conjugation of Ketamine and Norketamine in the whole blood and urine varied within up to 33 and 64% of the total amounts of these substances, respectively. In rats, Ketamine, Norketamine, and dehydronorketamine were excreted with urine primarily in unconjugated forms. Deaminonorketamine was excreted with urine mainly in the conjugated form (the degree of conjugation was higher than 80% in both humans and rots). The presence of O-glycoside bonds in deaminonorketamine conjugates was established. It is likely that O-glucuronides were formed with the enol form of deaminonorketamine; however, the enol form was not detected.
机译:通过气相色谱与火焰电离和氮磷检测和通过气相色谱 - 质谱,通过气相色谱和通过气相色谱 - 质谱来检查麻醉氯胺酮,2-(2-氯苯基)-2-(甲基氨基)-cyclohexanone的人和大鼠生物中的代谢。确认了新的氯胺酮代谢物(Deaminonorketamine及其不饱和类似物,Deamino-5,6 - Dehydronorketamine)的结构。将其中一种代谢物的替代结构是2-(2-氯苯基)-2-(甲基氨基)-CYCLOHEX-3-ENE-1- OL或6-羟基-3,4-脱氢胺。通过比较酸和酶水解的结果来确定氯胺酮和其代谢物的缀合性质。在人类中,氯胺酮和Norketamine在全血和尿液中的缀合程度分别在最多33%和64%的这些物质的总量。在大鼠中,主要用尿液排出氯胺酮,Norketamine和Dehydronorketamine以无缀有的形式排出。 Deaminonorketamine主要用尿液排出,主要以缀合形式(缀合程度高于人和腐蚀的80%)。建立了脱甘油苷蛋白缀合物中O-糖苷键的存在。 O-葡糖醛糖苷的酶含量的形式是脱诺隆葡萄酮的形式。但是,未检测到烯醇形式。

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