Laboratory of Toxicology, Forensic Service of Thessaloniki, Ministry of Justice, Thessaloniki, Greece.
Laboratory of Forensic Medicine and Toxicology, Medical School, Aristotle University, Thessaloniki, Greece.
J Forensic Sci. 2022 Sep;67(5):2130-2137. doi: 10.1111/1556-4029.15069. Epub 2022 Jun 1.
Cerumen is an emerging alternative biological matrix in the field of forensic toxicology. An ultra-high-pressure liquid chromatography-mass spectrometry/mass spectrometry [UHPLC-MS/MS] method for the determination of fentanyl and norfentanyl in cerumen was developed and applied in a mixed drug toxicity fatal case. The method was found to be selective and sensitive (LOQ: 0.05 ng/mg for fentanyl and 0.02 ng/mg for norfentanyl), while validation included recovery, carryover, short-term stability, matrix effect, accuracy, and precision (RSD%). Accuracy ranged from 83.1% to 103.5%, while intra- and inter-day precision ranged from 8.6% to 13.1% and from 8.3% to 15.8%, respectively. Matrix effect experiments showed that matrix did not significantly affect signal intensity (82.3%-96.8%). Short-term stability concerning sample extracts was found satisfactory. Fentanyl and norfentanyl were detected in cerumen at a concentration of 1.17 and 0.36 ng/mg respectively. The findings in cerumen corroborate the cause of death and suggest that cerumen is a potential specimen for detecting drugs of abuse in forensic cases.
耳垢是法医毒理学领域中一种新兴的替代生物基质。建立了一种超高效液相色谱-质谱/质谱[UHPLC-MS/MS]法,用于检测耳垢中的芬太尼和去甲芬太尼,并将其应用于混合药物毒性致死案例。该方法具有选择性和灵敏度(芬太尼的 LOQ:0.05ng/mg,去甲芬太尼的 LOQ:0.02ng/mg),验证包括回收率、交叉污染、短期稳定性、基质效应、准确性和精密度(RSD%)。准确度范围为 83.1%至 103.5%,日内和日间精密度分别为 8.6%至 13.1%和 8.3%至 15.8%。基质效应实验表明,基质对信号强度没有显著影响(82.3%-96.8%)。样品提取物的短期稳定性令人满意。在耳垢中检测到芬太尼和去甲芬太尼的浓度分别为 1.17ng/mg 和 0.36ng/mg。这些在耳垢中的发现证实了死亡原因,并表明耳垢是法医案例中检测滥用药物的潜在样本。