长期贮藏温度和氟化钠保存对人全血中合成卡西酮及二氢代谢物稳定性的影响。

IF 2.8 4区 医学 Q2 TOXICOLOGY
Abdulaziz A Aldubayyan, Erika Castrignanò, Simon Elliott, Vincenzo Abbate
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引用次数: 3

摘要

目的:合成卡西酮是最大的新型精神活性物质之一,对法医实验室的分析和解释提出了巨大的挑战。其中之一是合成卡西酮在不同生物样品中的不稳定性,这可能导致在解释毒理学结果时药物浓度的差异。在本研究中,我们监测了一组合成卡西酮及其二氢代谢物(n = 26)与内标在不同温度下储存6个月的人全血中的稳定性。本文还探讨了氟化钠作为防腐剂对采血管的影响。方法:采用两步液-液萃取技术提取样品,并根据已出版的指南建议使用经过验证的液相色谱-串联质谱法进行分析。结果:在全血样品中,温度对分析物稳定性的影响是一个重要因素,所有被测分析物的最佳保存温度为- 40℃。除室温外,氟化钠对卡西酮的稳定性无显著影响。双氢代谢物在全血样本中表现出更好的稳定性,在所有测试条件下都能检测到更长的时间。结论:数据表明,如果可能,应立即对含有合成卡西酮的样品进行分析。或者,全血样本应冷冻保存(- 40°C或更低);然而,(定量)结果在长期保存后应谨慎解释。这些数据还促进了双氢代谢物作为合成卡西酮摄入的生物标志物的使用,因为与母体药物相比,这些减少的代谢物可能在全血样本中检测到更长的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of long-term storage temperatures and sodium fluoride preservation on the stability of synthetic cathinones and dihydro-metabolites in human whole blood.

Influence of long-term storage temperatures and sodium fluoride preservation on the stability of synthetic cathinones and dihydro-metabolites in human whole blood.

Purpose: Synthetic cathinones, one of the largest groups of new psychoactive substances, represent a large analytical and interpretative challenge in forensic laboratories. Of these is the synthetic cathinones' instability in different biological samples, which may lead to drug concentration discrepancies when interpreting toxicological findings. In this study, the stability of a panel of synthetic cathinones and their dihydro-metabolites (n = 26) together with internal standard was monitored in human whole blood stored at various temperatures over 6 months. The influence of sodium fluoride as a preservative in blood collection tubes was also investigated.

Methods: Samples were extracted using a two-step liquid-liquid extraction technique, and analyzed using a validated liquid chromatography-tandem mass spectrometry method following recommendations of published guidelines.

Results: The influence of temperature over analytes' stability was an important element in whole blood samples, with - 40 °C being the best storage temperature for all tested analytes. Sodium fluoride did not significantly affect the stability of cathinones except at room temperature. Dihydro-metabolites displayed better stability in whole blood samples and remained detectable for a longer period of time under all tested conditions.

Conclusions: The data suggest that samples containing synthetic cathinones should be analyzed immediately, if possible. Alternatively, whole blood samples should be stored frozen (at - 40 °C or lower); however, (quantitative) results should be interpreted with caution after long-term storage. The data also promote the use of dihydro-metabolites as biomarkers for synthetic cathinones intake, as these reduced metabolites may be detected for longer period of time when compared with parent drugs in whole blood samples.

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来源期刊
Forensic Toxicology
Forensic Toxicology TOXICOLOGY-
CiteScore
5.80
自引率
9.10%
发文量
40
审稿时长
3 months
期刊介绍: The journal Forensic Toxicology provides an international forum for publication of studies on toxic substances, drugs of abuse, doping agents, chemical warfare agents, and their metabolisms and analyses, which are related to laws and ethics. It includes original articles, reviews, mini-reviews, short communications, and case reports. Although a major focus of the journal is on the development or improvement of analytical methods for the above-mentioned chemicals in human matrices, appropriate studies with animal experiments are also published. Forensic Toxicology is the official publication of the Japanese Association of Forensic Toxicology (JAFT) and is the continuation of the Japanese Journal of Forensic Toxicology (ISSN 0915-9606).
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