In silico prediction, LC-HRMS/MS analysis, and targeted/untargeted data-mining workflow for the profiling of phenylfentanyl in vitro metabolites

被引:31
作者
Di Trana, Annagiulia [1 ]
Brunetti, Pietro [1 ]
Giorgetti, Raffaele [1 ]
Marinelli, Enrico [2 ]
Zaami, Simona [2 ]
Busardo, Francesco Paolo [1 ]
Carlier, Jeremy [1 ,2 ]
机构
[1] Marche Polytech Univ, Unit Forens Toxicol, Sect Legal Med, Dept Excellence Biomed Sci & Publ Hlth, Via Tronto 10-A, I-60126 Ancona, Italy
[2] Sapienza Univ Rome, Unit Forens Toxicol, Sect Legal Med, Dept Anat Histol Forens & Orthoped Sci, I-00198 Rome, Italy
关键词
Phenylfentanyl; In silico prediction; Hepatocyte metabolism; Liquid chromatography-High-resolution tan-dem mass spectrometry; Data-dependent analysis; Software-assisted data mining; HUMAN HEPATOCYTES; SYNTHETIC CANNABINOIDS; ACUTE INTOXICATIONS; ILLICIT FENTANYL; IDENTIFICATION; OPIOIDS; ACETYLFENTANYL; FATALITIES; UPDATE; DRUG;
D O I
10.1016/j.talanta.2021.122740
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Illicit fentanyl and analogues have been involved in many fatalities and cases of intoxication across the United States over the last decade, and are becoming a health concern in Europe. New potent analogues emerge onto the drug market every year to circumvent analytical detection and legislation, and little pharmacological/toxico-logical data are available when the substances first appear. However, pharmacokinetic data are crucial to determine specific biomarkers of consumption in clinical and forensic settings, considering the low active doses and the rapid metabolism of fentanyl analogues. Phenylfentanyl is a novel analogue that was first detected in seized material in 2017, and little is currently known about this substance and its metabolism. We studied phenylfentanyl metabolic fate using in silico predictions with GLORYx freeware, human hepatocyte incubations, and liquid chromatography-high-resolution tandem mass spectrometry (LC-HRMS/MS). We applied a specific targeted/untargeted workflow using data-mining software to allow the rapid and partially automated screening of LC-HRMS/MS raw data. Approximately 90,000 substances were initially individuated after 3-h incubation with hepatocytes, and 115 substances were automatically selected for a manual check by the oper-ators. Finally, 13 metabolites, mostly produced by N-dealkylation, amide hydrolysis, oxidation, and combina-tions thereof, were identified. We suggest phenylnorfentanyl as the main biological marker of phenylfentanyl use, and we proposed the inclusion of its fragmentation pattern in mzCloud and HighResNPS online libraries. Other major metabolites include N-Phenyl-1-(2-phenylethyl)-4-piperidinamine (4-ANPP), 1-(2-phenylethyl)-4-piperidinol, and other non-specific metabolites. Phase II transformations were infrequent, and the hydrolysis of the biological samples is not required to increase the detection capability of non-conjugated metabolites. The overall workflow is easily adaptable for the metabolite profiling of other novel psychoactive substances.
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页数:13
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共 53 条
[1]  
[Anonymous], 2018, EMCDDA EUR 2017 ANN
[2]   Correlations between metabolism and structural elements of the alicyclic fentanyl analogs cyclopropyl fentanyl, cyclobutyl fentanyl, cyclopentyl fentanyl, cyclohexyl fentanyl and 2,2,3,3-tetramethylcyclopropyl fentanyl studied by human hepatocytes and LC-QTOF-MS [J].
Astrand, Anna ;
Toreskog, Amanda ;
Watanabe, Shimpei ;
Kronstrand, Robert ;
Green, Henrik ;
Vikingsson, Svante .
ARCHIVES OF TOXICOLOGY, 2019, 93 (01) :95-106
[3]   Metabolic Hydrolysis of Aromatic Amides in Selected Rat, Minipig, and Human In Vitro Systems [J].
Bradshaw, Peter R. ;
Wilson, Ian D. ;
Gill, Rachel Upcott ;
Butler, Philip J. ;
Dilworth, Clive ;
Athersuch, Toby J. .
SCIENTIFIC REPORTS, 2018, 8
[4]   A 2017-2019 Update on Acute Intoxications and Fatalities from Illicit Fentanyl and Analogs [J].
Brunetti, Pietro ;
Pirani, Filippo ;
Carlier, Jeremy ;
Giorgetti, Raffaele ;
Busardo, Francesco Paolo ;
Lo Faro, Alfredo Fabrizio .
JOURNAL OF ANALYTICAL TOXICOLOGY, 2021, 45 (06) :537-554
[5]   Pyrrolidinyl Synthetic Cathinones α-PHP and 4F-α-PVP Metabolite Profiling Using Human Hepatocyte Incubations [J].
Carlier, Jeremy ;
Diao, Xingxing ;
Giorgetti, Raffaele ;
Busardo, Francesco P. ;
Huestis, Marilyn A. .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (01) :1-17
[6]   Synthetic cannabinoid BB-22 (QUCHIC): Human hepatocytes metabolism with liquid chromatography-high resolution mass spectrometry detection [J].
Carlier, Jeremy ;
Diao, Xingxing ;
Huestis, Marilyn A. .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2018, 157 :27-35
[7]   In Vitro Metabolite Profiling of ADB-FUBINACA, A New Synthetic Cannabinoid [J].
Carlier, Jeremy ;
Diao, Xingxing ;
Wohlfarth, Ariane ;
Scheidweiler, Karl ;
Huestis, Marilyn A. .
CURRENT NEUROPHARMACOLOGY, 2017, 15 (05) :682-691
[8]   Identification of New Synthetic Cannabinoid ADB-CHMINACA (MAB-CHMINACA) Metabolites in Human Hepatocytes [J].
Carlier, Jeremy ;
Diao, Xingxing ;
Sempio, Cristina ;
Huestis, Marilyn A. .
AAPS JOURNAL, 2017, 19 (02) :568-577
[9]   Quantification of [1-(5-fluoropentyl)-1H-indol-3-yl](naphthalene-1-yl)methanone (AM-2201) and 13 metabolites in human and rat plasma by liquid chromatography-tandem mass spectrometry [J].
Carlier, Jeremy ;
Scheidweiler, Karl B. ;
Wohlfarth, Ariane ;
Salmeron, Bonita D. ;
Baumann, Michael H. ;
Huestis, Marilyn A. .
JOURNAL OF CHROMATOGRAPHY A, 2016, 1451 :97-106
[10]   Distinguishing Intake of New Synthetic Cannabinoids ADB-PINACA and 5F-ADB-PINACA with Human Hepatocyte Metabolites and High-Resolution Mass Spectrometry [J].
Cartier, Jeremy ;
Diao, Xingxing ;
Scheidweiler, Karl B. ;
Huestis, Marilyn A. .
CLINICAL CHEMISTRY, 2017, 63 (05) :1008-1021