A high-performance liquid chromatographic method with triple-quadrupole mass spectrometry detection (LC-MS-MS) was developed and validated for the first time for the simultaneous quantification of zopiclone and its metabolites in rat plasma samples. The analytes were isolated from rat plasma by liquid-liquid extraction and separated using a chiral stationary phase based on an amylose derivative, Chiralpak ADR-H column, and ethanol-methanol-acetonitrile (50:45:5, v/v/v) plus 0.025% diethylamine as the mobile phase, at a flow-rate of 1.0 mL min(-1). Moclobemide was used as the internal standard. The developed method was linear over the concentration range of 7.5-500 ng mL(-1). The mean absolute recoveries were 74.6 and 75.7; 61.6 and 56.9; 72.5, and 70.7 for zopiclone enantiomers, for N-desmethyl zopiclone enantiomers and for zopiclone-N-oxide enantiomers, respectively, and 75.9 for the internal standard. Precision and accuracy were within acceptable levels of confidence (<15%). The method application in a pilot study of zopiclone kinetic disposition in rats showed that the levels of (+)-(S)-zopiclone were always higher than those of (-)-R-zopiclone. Higher concentrations were also observed for (+)-(S)-N-desmethyl zopiclone and (+)-(S)-N-oxide zopiclone, confirming the stereoselective disposition of zopiclone.
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http://dx.doi.org/10.1007/s00216-011-5033-0 | DOI Listing |
J Anal Toxicol
July 2023
Department of Forensic Genetics and Forensic Toxicology, National Board of Forensic Medicine, Artillerigatan 12, Linköping SE-58758, Sweden.
Postmortem whole blood samples can differ greatly in quality where hyperlipemia is a frequent variable that can influence the results of analytical methods. The aim of this study was to investigate the influence of lipemia on postmortem analysis as well as demonstrate the usage of Intralipid in comparison to pooled postmortem lipids as matrix additives for meaningful evaluation and validation of hyperlipidemic postmortem samples. Hyperlipidemic blood samples were simulated by adding different concentrations of Intralipid or pooled authentic postmortem lipids to bovine whole blood.
View Article and Find Full Text PDFSud Med Ekspert
February 2023
Russian Center of Forensic Medical Expertise, Moscow, Russia.
The study objective was to detect and measure the ratio of metabolites of benzodiazepine receptor agonists in urine during forensic chemical and chemical and toxicological studies, as well as to characterize the main metabolites to use them to confirm the oral intake of the test substances. Data on the presence of metabolites in the urine will allow us to reliably confirm the intake of zaleplon, zopiclone, clobazam, and phenazepam and determine the routes of administration (intake) into the body of the victim. Benzodiazepine derivatives (clobazam and phenazepam) and non-benzodiazepines (zaleplon and zopiclone) have different chemical structures and similar mechanisms of action resulting in a similar clinical presentation of side effects and the need for forensic chemical study according to poisoning symptoms.
View Article and Find Full Text PDFJ Anal Toxicol
March 2023
Department of Forensic Sciences, Division of Laboratory Medicine, Oslo University Hospital, P.O. Box 4950, Oslo N-0424, Norway.
Benzodiazepines and z-hypnotics are detected in the majority of fatal overdose cases in Norway, often in combination with other drugs of abuse, and their concentrations in peripheral blood (PB) might be important to elucidate the cause of death. In some forensic autopsies, PB is however not available. The aim of the present study was to compare concentrations of benzodiazepines and z-hypnotics in five alternative matrices to assess whether these concentrations are comparable to concentrations in PB.
View Article and Find Full Text PDFThe objective of the study is to evaluate the potential for the use of cards for sampling and transportation of biological material during forensic chemical and toxicological examinations by the example of a biological sample, urine containing zopiclone. Two methods of sample preparation were compared. The use of cards for the collection and transportation of biological material, such as urine, followed by high-resolution high-performance liquid chromatography-mass spectrometry (HPLC-MS) for the identification of zopiclone metabolites was shown to be beneficial in forensic chemical and toxicological examination.
View Article and Find Full Text PDFJ Anal Toxicol
October 2020
Toxicology Department, Cuyahoga County Medical Examiner's Office (CCMEO), 11001 Cedar Avenue, Cleveland, OH 44106, USA.
An analytical method for the detection of 40 benzodiazepines, (±)-zopiclone, zaleplon and zolpidem in blood and urine by solid-phase extraction liquid chromatography-tandem mass spectrometry was developed and validated. Twenty-nine of 43 analytes were quantified in 0.5 mL whole blood for investigating postmortem, drug-facilitated sexual assault (DFSA) and driving under the influence of drugs cases (DUID).
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