Alpha-Methylfentanyl and Beta-Hydroxyfentanyl LC–MS-MS Quantification in Rat Plasma after Long-Term Ethanol Exposure

Author:

Lyu Lihong12,Chen Rui12,Li Lu12,Duan Hongbin12,Chen Yao12,Wang Rong3,Xu Zhiru12,Zhang Yurong3

Affiliation:

1. State Key Laboratory of New Drug and Pharmaceutical Process, Shanghai Institute of Pharmaceutical Industry, China State Institute of Pharmaceutical Industry, Shanghai 200437, China

2. Shanghai Professional and Technical Service Center for Biological Material Drug-ability Evaluation, Shanghai 200437, China

3. Shanghai Key Laboratory of Crime Scene Evidence, Shanghai 200437, China

Abstract

Abstract Fentanyl and its analogues are highly abused drugs that dominate the illicit drug trade. alpha-Methylfentanyl (A-F) and beta-hydroxyfentanyl (B-F) are two fentanyl analogues that require the development of rapid detection technologies. The current study established and validated a rapid and high-sensitivity liquid chromatography–tandem mass spectrometry (LC–MS-MS) method to measure A-F and B-F concentrations in rat plasma following intravenous drug administration (20 μg/kg). Because fentanyl is primarily metabolized by the liver, we evaluated the concentrations of A-F and B-F in vivo in rats, in a control group and a group with liver damage induced by 55 days of oral ethanol gavage (6.5 g/kg, 22.5% v/v). Liquid–liquid extraction and LC–MS-MS operating in the positive ion multiple reaction monitoring mode were used. A C18 column was used, and the mobile phase consisted of 0.1% formic acid aqueous and acetonitrile. The limit of detection was 3 pg/mL (S/N > 5) for A-F and B-F. The calibration curves were linear within the concentration range of 0.01–5 ng/mL (R2 = 0.9991) and 0.005–20 ng/mL (R2 = 0.9999) for A-F and B-F, respectively. Extraction recoveries were 91.3%–97.6% with RSD ≤ 11.2% and 90.5%–94.3% with RSD ≤ 10.5% for A-F and B-F, respectively. Plasma matrix effects were 80.61%–84.58% for A-F and 80.67%–81.33% for B-F with RSD ≤ 13.9%. The validated assay indicated no significant differences in pharmacokinetic parameters (AUC0-t, Cmax and T1/2) derived from the assessment of A-F and B-F plasma concentrations between control and ethanol-exposed rats. This assay, for which the LOD was 3 pg/mL for A-F and B-F may help the forensic science field to determine fentanyl analogue-related causes of death and identify illicit drug tampering.

Funder

Opening Project of Shanghai Key Laboratory of Crime Scene Evidence

Publisher

Oxford University Press (OUP)

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology,Environmental Chemistry,Analytical Chemistry

Reference28 articles.

1. Analysis of fentanyl and 18 novel fentanyl analogs and metabolites by LC-MS-MS, and report of fatalities associated with methoxyacetylfentanyl and cyclopropylfentanyl;Fogarty;Journal of Analytical Toxicology,2018

2. Fentanyls: are we missing the signs? Highly potent and on the rise in Europe;Mounteney;International Joural of Drug Policy,2015

3. Abuse of fentanyl: an emerging problem to face;Kuczynska;Forensic Science International,2018

4. Fentanyl-related deaths in ontario, canada: Toxicological findings and circumstances of death in 112 cases (2002–2004);Mclellan;Journal of Analytical Toxicology,2006

5. Editorial for “US heroin in transition: supply changes, fentanyl adulteration and consequences” IJDP special section;Ciccaron;International Journal of Drug Policy,2017

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