Targeted and untargeted detection of fentanyl analogues and their metabolites in hair by means of UHPLC-QTOF-HRMS.
Alberto SalomoneDaniele Di CorciaPierre NegriMaria KoliaEleonora AmanteEnrico GeraceMarco VincentiPublished in: Analytical and bioanalytical chemistry (2020)
Detection of new psychoactive substances and synthetic opioids is generally performed by means of targeted methods in mass spectrometry, as they generally provide adequate sensitivity and specificity. Unfortunately, new and unexpected compounds are continuously introduced in the illegal market of abused drugs, preventing timely updating of the analytical procedures. Moreover, the investigation of biological matrices is influenced by metabolism and excretion, in turn affecting the chance of past intake detectability. In this scenario, new opportunities are offered by both the non-targeted approaches allowed by modern UHPLC-HRMS instrumentation and the investigation of hair as the matrix of choice to detect long-term exposure to toxicologically relevant substances. In this study, we present a comprehensive and validated workflow that combines the use of UHPLC-QTOF-HRMS instrumentation with a simple hair sample extraction procedure for the detection of a variety of fentanyl analogues and metabolites. A simultaneous targeted and untargeted analysis was applied to 100 real samples taken from opiates users. MS and MS/MS data were collected for each sample. Data acquisition included a TOF-MS high-resolution scan combined with TOF-MS/MS acquisition demonstrating considerable capability to detect expected and unexpected substances even at low concentration levels. The predominant diffusion of fentanyl was confirmed by its detection in 68 hair samples. Other prevalent analogues were furanylfentanyl (28 positive samples) and acetylfentanyl (14 positive samples). Carfentanil, methylfentanyl, and ocfentanil were not found in any of the analyzed samples. Furthermore, the retrospective data analysis based on untargeted acquisition allowed the identification of two fentanyl analogues, namely β-hydroxyfentanyl and methoxyacetylfentanyl, which were not originally included in the panel of targeted analytes.
Keyphrases
- ms ms
- mass spectrometry
- high resolution mass spectrometry
- liquid chromatography
- data analysis
- high resolution
- cancer therapy
- liquid chromatography tandem mass spectrometry
- loop mediated isothermal amplification
- ultra high performance liquid chromatography
- molecular docking
- tandem mass spectrometry
- label free
- gas chromatography
- real time pcr
- high performance liquid chromatography
- electronic health record
- drinking water
- chronic pain
- simultaneous determination
- big data
- magnetic resonance
- drug delivery
- body mass index
- solid phase extraction
- structure activity relationship
- working memory
- capillary electrophoresis
- quantum dots
- weight loss
- deep learning
- fluorescent probe
- sensitive detection
- molecular dynamics simulations
- contrast enhanced