A fatal case of poisoning related to new cathinone designer drugs, 4-methoxy PV8, PV9, and 4-methoxy PV9, and a dissociative agent, diphenidine.
Keiko Kudo, Yosuke Usumoto, Ruri Kikura-Hanajiri, Naomi Sameshima, Akiko Tsuji, Noriaki Ikeda
Legal medicine (Tokyo, Japan) September 1, 2015 DOI: 10.1016/j.legalmed.2015.06.005 (opens in new tab) via PubMed
Summary
AI-generated from the abstractA woman in her thirties was found dead with aroma liquid, bath salt products, and hypnotic drug tablets nearby. Autopsy revealed pulmonary congestion and edema. Analysis detected four designer drugs: 4-methoxy PV8, PV9, 4-methoxy PV9, and diphenidine, plus three benzodiazepines (triazolam, flunitrazepam, nitrazepam) and alcohol. Femoral blood concentrations of the cathinones and diphenidine were 2.69, 0.743, 0.261, and 1.38 μg/ml, respectively, markedly higher than earlier cases; alcohol was 1.52 mg/ml. The cause of death was poisoning from these cathinone drugs and diphenidine, compounded by benzodiazepines and alcohol.
Study at a glance
| Characteristics | Case study Case report Peer reviewed |
|---|---|
| Sample size | 1 |
| Population | A woman in her thirties |
| Keywords | Diphenidine Gc–ms Lc–ms/ms Pv9 α-pop |
| Key finding | Death resulted from poisoning by three cathinone designer drugs and diphenidine, with contributing benzodiazepines and alcohol. |
Abstract
A woman in her thirties was found dead on a bed. Considerable amounts of "aroma liquid" and "bath salt" products and hypnotic drug tablets were scattered beside the bed. Autopsy showed pulmonary congestion and edema. Gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-mass spectrometry (LC-MS) analyses of "aroma liquid" and "bath salt" products showed the presence of new cathinone designer drugs, 4-methoxy PV8 (4-methoxy PHPP), PV9 (α-POP), and 4-methoxy PV9 (4-methoxy α-POP), and a dissociative agent, diphenidine. Drug screening in stomach contents, blood and hydrolyzed urine of the woman by GC-MS and liquid chromatography-tandem mass spectrometry (LC-MS/MS) revealed the presence of the above 4 types of drugs and 3 types of benzodiazepines, triazolam, flunitrazepam, and nitrazepam, and their metabolites. The above 7 drugs and 3 benzodiazepine metabolites were simultaneously determined by LC-MS/MS after modified QuEChERS (Quick, Easy, Cheap, Effective, Rugged, Safe) extraction using diazepam-d5 as the internal standard. The concentrations of 4-methoxy PV8, PV9, 4-methoxy PV9, and diphenidine in the femoral blood were 2.69, 0.743, 0.261, and 1.38μg/ml, respectively, which were significantly higher than concentrations reported in previous cases. Alcohol concentration in the femoral blood was 1.52mg/ml. Based on the pathological and toxicological findings, the cause of death was determined to be 3 types of cathinone drugs, 4-methoxy PV8, PV9, and 4-methoxy PV9, and diphenidine poisoning under the influence of 3 benzodiazepines and alcohol.