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通过对映体选择性毛细管电泳评估七氟醚与美托咪定联合用药对比下比格犬体内氯胺酮及其三种代谢物的药代动力学。

Pharmacokinetics of ketamine and three metabolites in Beagle dogs under sevoflurane vs. medetomidine comedication assessed by enantioselective capillary electrophoresis.

作者信息

Sandbaumhüter Friederike A, Theurillat Regula, Bektas Rima N, Kutter Annette P N, Bettschart-Wolfensberger Regula, Thormann Wolfgang

机构信息

Clinical Pharmacology Laboratory, Institute for Infectious Diseases, University of Bern, Bern, Switzerland.

Section of Anaesthesiology, Equine Department, Vetsuisse Faculty, University of Zürich, Zürich, Switzerland.

出版信息

J Chromatogr A. 2016 Oct 7;1467:436-444. doi: 10.1016/j.chroma.2016.07.060. Epub 2016 Jul 25.

Abstract

Ketamine is often used for anesthesia in veterinary medicine. One possible comedication is the sedative α-agonist medetomidine. Advantages of that combination are the compensation of side effects of the two drugs and the anesthetic-sparing effect of medetomidine. In vitro studies showed that medetomidine has an inhibitive effect on the formation of norketamine. Norketamine is the first metabolite of ketamine and is also active. It is followed by others like 6-hydroxynorketamine and 5,6-dehydronorketamine (DHNK). In an in vivo pharmacokinetic study Beagle dogs under sevoflurane anesthesia (mean end-tidal concentration 3.0±0.2%) or following medetomidine sedation (450μg/m) received 4mg/kg racemic ketamine or 2mg/kg S-ketamine. Blood samples were collected between 0 and 900min after drug injection. 50μL aliquots of plasma were pretreated by liquid-liquid extraction prior to analysis of the reconstituted extracts with a robust enantioselective capillary electrophoresis assay using highly sulfated γ-cyclodextrin as chiral selector and electrokinetic sample injection of the analytes from the extract across a short buffer plug without chiral selector. Levels of S- and R-ketamine, S- and R-norketamine, (2S,6S)- and (2R,6R)-hydroxynorketamine and S- and R-DHNK were determined. Data were analyzed with compartmental pharmacokinetic models which included two compartments for the ketamine and norketamine enantiomers and a single compartment for the DHNK and 6-hydroxynorketamine stereoisomers. Medetomidine showed an effect on the formation and elimination of all metabolites. Stereoselectivities were detected for 6-hydroxynorketamine and DHNK, but not for ketamine and norketamine.

摘要

氯胺酮常用于兽医学麻醉。一种可能的联合用药是镇静性α-激动剂美托咪定。这种联合用药的优点是可补偿两种药物的副作用以及美托咪定的麻醉节省效应。体外研究表明,美托咪定对去甲氯胺酮的形成有抑制作用。去甲氯胺酮是氯胺酮的首个代谢产物,也具有活性。随后还有其他代谢产物,如6-羟基去甲氯胺酮和5,6-脱氢去甲氯胺酮(DHNK)。在一项体内药代动力学研究中,处于七氟醚麻醉(平均呼气末浓度3.0±0.2%)下的比格犬或接受美托咪定镇静(450μg/m)的比格犬接受了4mg/kg消旋氯胺酮或2mg/kg S-氯胺酮。在药物注射后0至900分钟内采集血样。在使用高硫酸化γ-环糊精作为手性选择剂并通过无手性选择剂的短缓冲塞对提取物进行电动进样的稳健对映体选择性毛细管电泳分析重构提取物之前,通过液-液萃取对50μL血浆等分试样进行预处理。测定了S-和R-氯胺酮、S-和R-去甲氯胺酮、(2S,6S)-和(2R,6R)-羟基去甲氯胺酮以及S-和R-DHNK的水平。数据采用房室药代动力学模型进行分析,该模型包括氯胺酮和去甲氯胺酮对映体的两个房室以及DHNK和6-羟基去甲氯胺酮立体异构体的一个房室。美托咪定对所有代谢产物的形成和消除均有影响。检测到6-羟基去甲氯胺酮和DHNK存在立体选择性,但氯胺酮和去甲氯胺酮不存在立体选择性。

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