1.Research Advances in the Monitoring of New Psychoactive Substances in Municipal Wastewater.
Shuai YUAN ; Ru Xin LUO ; Ping XIANG
Journal of Forensic Medicine 2021;37(4):470-478
In recent years, as the third-generation of drugs, new psychoactive substances (NPS) have expanded rapidly and become a serious concern for China's anti-drug prevention and control system. As a new drug monitoring technology in the current anti-drug field, wastewater analysis is an objective, real-time, accurate, convenient and effective drug monitoring method. In recent years, it has gradually been applied to the monitoring of NPS. This study summarizes wastewater sample collection, target stability research, wastewater sample pretreatment, wastewater sample analysis methods, target NPS consumption calculations and actual monitoring applications, with a view to the construction of a monitoring system for NPS in wastewater, real-time and accurate grasp of information on the use of NPS in cities, the reflection of the actual consumption of different types of NPS and consumption trends in a short period of time, and prediction of the development trend of abused use, which is of great significance for combating NPS crimes, serving and guaranteeing the personal safety of the people, and maintaining social stability.
China
;
Cities
;
Illicit Drugs/analysis*
;
Psychotropic Drugs/analysis*
;
Wastewater/analysis*
;
Water Pollutants, Chemical/analysis*
2.Research Progress on Machine Learning Assisted Non-Targeted Screening Strategy for Identification of Fentanyl Analogs.
Yu-Qi CAO ; Yan SHI ; Ping XIANG ; Yin-Long GUO
Journal of Forensic Medicine 2023;39(4):406-416
In recent years, the types and quantities of fentanyl analogs have increased rapidly. It has become a hotspot in the illicit drug control field of how to quickly identify novel fentanyl analogs and to shorten the blank regulatory period. At present, the identification methods of fentanyl analogs that have been developed mostly rely on reference materials to target fentanyl analogs or their metabolites with known chemical structures, but these methods face challenges when analyzing new compounds with unknown structures. In recent years, emerging machine learning technology can quickly and automatically extract valuable features from massive data, which provides inspiration for the non-targeted screening of fentanyl analogs. For example, the wide application of instruments like Raman spectroscopy, nuclear magnetic resonance spectroscopy, high resolution mass spectrometry, and other instruments can maximize the mining of the characteristic data related to fentanyl analogs in samples. Combining this data with an appropriate machine learning model, researchers may create a variety of high-performance non-targeted fentanyl identification methods. This paper reviews the recent research on the application of machine learning assisted non-targeted screening strategy for the identification of fentanyl analogs, and looks forward to the future development trend in this field.
Fentanyl
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Substance Abuse Detection/methods*
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Mass Spectrometry/methods*
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Illicit Drugs/analysis*
3.Qualitative and Quantitative Analysis of Five Indoles or Indazole Amide Synthetic Cannabinoids in Suspected E-Cigarette Oil by GC-MS.
Cui-Mei LIU ; Wei JIA ; Chun-Hui SONG ; Zhen-Hua QIAN ; Zhen-Dong HUA ; Yue-Meng CHEN
Journal of Forensic Medicine 2023;39(5):457-464
OBJECTIVES:
To establish the GC-MS qualitative and quantitative analysis methods for the synthetic cannabinoids, its main matrix and additives in suspicious electronic cigarette (e-cigarette) oil samples.
METHODS:
The e-cigarette oil samples were analyzed by GC-MS after diluted with methanol. Synthetic cannabinoids, its main matrix and additives in e-cigarette oil samples were qualitatively analyzed by the characteristic fragment ions and retention time. The synthetic cannabinoids were quantitatively analyzed by using the selective ion monitoring mode.
RESULTS:
The linear range of each compound in GC-MS quantitative method was 0.025-1 mg/mL, the matrix recovery rate was 94%-103%, the intra-day precision relative standard deviations (RSD) was less than 2.5%, and inter-day precision RSD was less than 4.0%. Five indoles or indazole amide synthetic cannabinoids were detected in 25 e-cigarette samples. The main matrixes of e-cigarette samples were propylene glycol and glycerol. Additives such as N,2,3-trimethyl-2-isopropyl butanamide (WS-23), glycerol triacetate and nicotine were detected in some samples. The content range of synthetic cannabinoids in 25 e-cigarette samples was 0.05%-2.74%.
CONCLUSIONS
The GC-MS method for synthesizing cannabinoid, matrix and additive in e-cigarette oil samples has good selectivity, high resolution, low detection limit, and can be used for simultaneous qualitative and quantitative analysis of multiple components; The explored fragment ion fragmentation mechanism of the electron bombardment ion source of indole or indoxamide compounds helps to identify such substances or other compounds with similar structures in cases.
Gas Chromatography-Mass Spectrometry/methods*
;
Electronic Nicotine Delivery Systems
;
Illicit Drugs/analysis*
;
Indazoles/chemistry*
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Glycerol/analysis*
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Cannabinoids
;
Indoles/chemistry*
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Ions
4.Detection of Synthetic Cannabinoid CUMYL-PEGACLONE in E-Cigarette Oil and Hair.
Tai-Feng JIAO ; Ya-Qing LI ; Gang KANG ; Shen-Shu CHEN ; Liang-Hong CHENG
Journal of Forensic Medicine 2022;38(5):595-600
OBJECTIVES:
To establish a combined high performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS) and gas chromatography-mass spectrometry (GC-MS) method to detect the synthetic cannabinoid CUMYL-PEGACLONE in e-cigarette oil and hair.
METHODS:
HPLC-MS/MS and GC-MS were used to establish the detection method of CUMYL-PEGACLONE, and the hair of drug-involved persons and the seized e-cigarette oil were detected.
RESULTS:
The main mass spectrometry characteristic ions m/z of CUMYL-PEGACLONE measured by GC-MS were 91, 179, 197, 254 and 372. CUMYL-PEGACLONE had a good linear relationship in the mass concentration range of 2-50 ng/mL, and the linear correlation coefficient (r) was greater than 0.99. The limit of detection (LOD) of CUMYL-PEGACLONE in hair was 0.01 ng/mg, and the limit of quantitation (LOQ) was 0.02 ng/mg. The LOD of CUMYL-PEGACLONE in e-cigarette oil was 1 ng/mg, and the LOQ was 2 ng/mg. The average recoveries of CUMYL-PEGACLONE under the attempt at high, intermediate and low levels in blank human hair and e-cigarette oil matrix were 98.2%-132.4% and 93.5%-110.6%, and the intraday and intraday precision were 1.2%-12.9% and 0.7%-2.9%. CUMYL-PEGACLONE was detected in the hair of 15 drug-involved persons. Except for 1 person who was lower than LOQ, the concentration of CUMYL-PEGACLONE in the hair of other 14 persons was 0.035-0.563 ng/mg. The mass fraction of CUMYL-PEGACLONE in 2 e-cigarette oil were 0.17% and 0.21%, respectively.
CONCLUSIONS
The established HPLC-MS/MS and GC-MS methods are applied to the detection of HPLC-MS/MS in drug-related cases, which provides strong evidence support for the handling authority to quickly investigate these cases, and also provides a reference for the identification of such substances in future.
Humans
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Illicit Drugs/analysis*
;
Tandem Mass Spectrometry
;
Electronic Nicotine Delivery Systems
;
Cannabinoids
;
Hair/chemistry*
;
Limit of Detection
;
Substance Abuse Detection/methods*
5.The present study situation and application prospect of nail analysis for abused drugs.
Hang CHEN ; Ping XIANG ; Min SHEN
Journal of Forensic Medicine 2010;26(5):367-373
In forensic toxicology analysis, various types of biological samples have their own special characteristics and scope of applications. In this article, the physiological structure of nails, methods for collecting and pre-processing samples, and for analyzing some poisons and drugs in the nails are reviewed with details. This paper introduces the influence factors of drug abuse of the nails. The prospects of its further applications are concluded based on the research results. Nails, as an unconventional bio-sample without general application, show great potential and advantages in forensic toxicology.
Alprazolam/analysis*
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Azabicyclo Compounds/analysis*
;
Chromatography, High Pressure Liquid/methods*
;
Cocaine/analysis*
;
Diazepam/analysis*
;
Eszopiclone
;
Forensic Toxicology/methods*
;
Gas Chromatography-Mass Spectrometry/methods*
;
Hair/chemistry*
;
Humans
;
Illicit Drugs/analysis*
;
Nails/physiology*
;
Piperazines/analysis*
;
Specimen Handling/methods*
;
Substance Abuse Detection/methods*