Publications by authors named "R A Kalyokin"

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.

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The 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.

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Was to develop a method for the qualitative and quantitative determination of benzodiazepine receptor agonists (zaleplon and clobazam), taking into account different chemical structures, by high-performance liquid chromatography-high-resolution tandem mass spectrometry using Orbitrap technology for the purposes and tasks of forensic medical examination. A method has been developed for the identification and quantitative determination of zaleplon and clobazam by high-performance liquid chromatography-high-resolution tandem mass spectrometry using Orbitrap technology. The proposed identification method can be used in the future to form a database of domestic mass spectra for potent and narcotic substances.

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