Suspect Screening of Fentanyl Analogs Using Matrix-Assisted Ionization and a Miniature Mass Spectrometer with a Custom Expandable Mass Spectral Library.
Xiangyu GuoYuhan ShangYueguang LvHua BaiQiang MaPublished in: Analytical chemistry (2021)
The reliable identification of fentanyl and its analogs is of great significance for public security. However, with the growing prevalence of fentanyl compounds, current analytical strategies cannot fully meet the need for fast and high-throughput detection. In this study, a simple, rapid, and on-site analytical protocol was developed based on a miniature mass spectrometer. A dramatically simplified workflow was implemented using matrix-assisted ionization, bypassing complex sample pretreatment and chromatographic separation. The tandem mass spectrometry (MS/MS) capability afforded by the miniature ion trap mass spectrometer facilitated the investigation of fragmentation patterns for 49 fentanyl analogs during collision-induced dissociation, revealing valuable information on marker fragment ions and characteristic neutral loss. Calculations on Laplacian bond order values further verified the mass spectrometric behavior. A computation-assisted expandable mass spectral library was constructed in-house for fentanyl compounds. Smart suspect screening was carried out based on the full-scan MS and MS/MS data. The present study demonstrates an appealing potential for forensic applications, enabling streamlined screening for the presence of illicit fentanyl compounds at the point of seizures of suspect samples.
Keyphrases
- ms ms
- liquid chromatography
- tandem mass spectrometry
- high resolution
- high throughput
- mass spectrometry
- gas chromatography
- ultra high performance liquid chromatography
- high performance liquid chromatography
- simultaneous determination
- healthcare
- optical coherence tomography
- molecular docking
- multiple sclerosis
- computed tomography
- electronic health record
- randomized controlled trial
- mental health
- loop mediated isothermal amplification
- magnetic resonance
- emergency department
- risk factors
- magnetic resonance imaging
- molecular dynamics
- risk assessment
- density functional theory
- deep learning
- dual energy
- oxidative stress
- single cell
- adverse drug
- real time pcr