The 17 references in paper T. Rodina A., E. Melnikov S., A. Sokolov V., A. Prokofiev B., V. Arkhipov V., G. Adamov V., D. Pozdnyakov L., Yu. Olefir V., Т. Родина А., Е. Мельников С., А. Соколов В., А. Прокофьев Б., В. Архипов В., Г. Адамов В., Д. Поздняков Л., Ю. Олефир В. (2018) “Методика одновременного определения карбамазепина и карбамазепин-10,11-эпоксида методом ВЭЖХ-МС/МС // Method of simultaneous determination of carbamazepine and carbamazepine-10,11-epoxide by HPLC-MS/MS” / spz:neicon:vedomostincesmp:y:2015:i:4:p:20-25

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Kukes VG, ed. Directory of medicines metabolized in the human body. Moscow: International Association of clinical pharmacologists and pharmacists; 2013 (in Russian).
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Serralheiro A, Alves G, Fortuna A, Rocha M, Falcão A. First HPLC-UV method for rapid and simultaneous quantification of phenobarbital, primidone, phenytoin, carbamazepine, carbamazepine-10,11-epoxide, 10,11-transdihydroxy-10,11-dihydrocarbamazepine, lamotrigine, oxcarbazepine and licarbazepine in human plasma. J Chromatogr B Analyt Technol Biomed Life Sci. 2013 Apr 15; 925.
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Sato J, Saitoh T, Notani K, Fukuda H, Kaneyama K, Segami N. Diagnostic significance of carbamazepine and trigger zones in trigeminal neuralgia. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2004; PMID 14716252.
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Patsalos PN, Berry DJ, Blaise F, Bourgeois D, Cloyd JC, Glauser TA, Johannessen SI, Leppik IE, Tomson T, Perucca E. Antiepileptic drugs – best practice guidelines for therapeutic drug monitoring: A position paper by the subcommission on therapeutic drug monitoring, ILAE Commission on Therapeutic Strategies. Epilepsia 2008, 49(7): 1239–76.
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Pisani F, Caputo M, Fazio A, Oteri G, Russo M, Spina E, Perucca E, Bertilsson L. Interaction of carbamazepine-10,11-epoxide, an active metabolite of carbamazepine, with valproate: a pharmacokinetic study. Epilepsia 1990; 31(3): 339–42.
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Hallbach J, Vogel H, Guder WG. Determination of Lamotrigine, Carbamazepine and Carbamazepine Epoxide in Human Serum by Gas Chromatography Mass Spectrometry. Munich: Institute for Clinical Chemistry, Bogenhausen Hospital; 1997. R E F E R E N C E S ЗАКЛЮЧЕНИЕ Разработанная методика определения CB� и CB�-E при совместном присутствии в сыворотке крови человека методом ВЭЖХ-МС/МС может быть актуальной при проведении исследований биоэквивалентности дженериков карбамазепина и его пролонгированных форм. Кроме того, настоящая методика может быть применена в клинической практике для повышения эффективности и безопасности лечения больных, страдающих невралгией тройничного нерва, фантомно-болевым синдромом, а также для поведения терапевтического лекарственн
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Rouan MC, Campestrini J, Le Clanche V, et al. Automated microanalysis of carbamazepine and its epoxide and trans-diol metabolites in plasma by column liquid chromatography. J Chromatogr. 1992; 573: 65–8.
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Ferreira A, Rodrigues M, Oliveira P, Francisco J, Fortuna A, Rosado L, Rosado P, Falcão A, Alves G. Liquid chromatographic assay based on microextraction by packed sorbent for therapeutic drug monitoring of carbamazepine, lamotrigine, oxcarbazepine, phenobarbital, phenytoin and the active metabolites carbamazepine-10,11-epoxide and licarbazepine. Journal of Chromatography 2014; 971: 20–9.
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Pienimaki P, Fuchs S, Isojarvi J, et al. Improved detection and determination of carbamazepine and oxcarbazepine and their metabolites by highperformance liquid chromatography. J Chromatogr. 1995; 673: 97–105.
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Chan K. Simultaneous determination of carbamazepine and its epoxide metabolite in plasma and urine by high-performance liquid chromatography. J Chromatogr. 1985; 342: 341–7. 14. Rouan MC, Campestrini J, Le Clanche V, et al. Automated microanalysis of carbamazepine and its epoxide and trans-diol metabolites in plasma by column
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