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从英国学校查获的电子烟中的合成大麻素。

Synthetic cannabinoids in e-cigarettes seized from English schools.

作者信息

Cozier Gyles E, Gardner Matthew, Craft Sam, Skumlien Martine, Spicer Jack, Andrews Rachael, Power Alexander, Haines Tom, Bowman Richard, Manley Amy E, Sunderland Peter, Sutcliffe Oliver B, Husbands Stephen M, Hines Lindsey, Taylor Gillian, Freeman Tom P, Scott Jennifer, Pudney Christopher R

机构信息

Department of Life Sciences, University of Bath, Bath, UK.

Department of Psychology, University of Bath, Bath, UK.

出版信息

Addiction. 2025 Jun 26. doi: 10.1111/add.70110.

Abstract

BACKGROUND AND AIMS

People who use synthetic cannabinoids (SCs) report debilitating side effects and withdrawal symptoms, coupled with dependence. In the UK, SC use was believed to be largely restricted to prison, where they are the most common drug and associated with nearly half of non-natural deaths, or poly-drug users in the community who are also likely to be homeless. However, national media reporting has increasingly identified cases of children collapsing in schools, which are claimed to be associated with vaping and putatively involving a drug such as delta-9-tetrahydrocannabinol (THC) or SCs. We therefore conducted the first study to identify and quantify SCs in e-cigarettes routinely collected from schools in England.

DESIGN

E-cigarette and e-liquid samples seized by teachers in schools were identified through engagement with police forces and city councils in England. We sought agreements across broad geographical areas and based on acquiring the relevant approvals at a local level. Sample bias is considered in the analysis and reporting.

SETTING AND CASES

Samples were submitted from 27 secondary (age 11-18) schools from geographically distinct regions of England, representing a broad range of social metrics (free school meals, persistent absenteeism and special educational needs). All submitted samples were anonymised and no identifying information was collected. Analysis of samples was conducted both in a laboratory setting and in-field at local police stations.

MEASUREMENTS

Qualitative gas chromatography-mass spectrometry and liquid chromatography-mass spectrometry were used to identify SCs and THC in e-cigarettes/liquid, with concentration measured by quantitative nuclear magnetic resonance spectroscopy. A subset of samples was screened for SCs and THC using a portable detector based on combined fluorescence and photochemical discrimination.

FINDINGS

E-cigarettes containing SC were identified in 77.8% of all participating schools and were detected in 17.4% of all samples seized. These were almost entirely in refillable devices and liquid bottles, with very few in single use products. The percentage of SC e-cigarettes in schools positively correlated with the fraction of pupils eligible for free school meals, a social deprivation metric (Pearson's correlation r = 0.65 and P = 0.003). Positive samples contained a median SC concentration of 0.42 (interquartile range = 0.77) mg mL with a maximum of 3.6 mg mL. In contrast, few samples contained THC (1.2%).

CONCLUSIONS

E-cigarettes containing synthetic cannabinoids were identified in three quarters of 27 secondary schools in England that were sampled.

摘要

背景与目的

使用合成大麻素(SCs)的人报告称出现了使人衰弱的副作用和戒断症状,同时还存在成瘾问题。在英国,人们认为合成大麻素的使用主要局限于监狱,在那里它们是最常见的毒品,并且与近一半的非自然死亡有关,或者在社区中也与多药滥用者有关,这些人也很可能无家可归。然而,国家媒体报道越来越多地发现有儿童在学校晕倒的案例,据称这与电子烟有关,并且推测涉及一种药物,如δ-9-四氢大麻酚(THC)或合成大麻素。因此,我们开展了第一项研究,以识别和量化从英格兰学校常规收集的电子烟中的合成大麻素。

设计

通过与英格兰的警察部队和市议会合作,识别学校教师查获的电子烟和电子烟液样本。我们在广泛的地理区域寻求达成协议,并基于在地方层面获得相关批准。在分析和报告中考虑了样本偏差。

地点与案例

样本来自英格兰不同地理区域的27所中学(11至18岁),代表了广泛的社会指标(免费学校餐、持续缺勤和特殊教育需求)。所有提交的样本均进行了匿名处理,未收集任何识别信息。样本分析在实验室环境和当地警察局现场进行。

测量

采用气相色谱 - 质谱联用和液相色谱 - 质谱联用技术定性识别电子烟/烟液中的合成大麻素和四氢大麻酚,通过定量核磁共振光谱法测量浓度。使用基于荧光和光化学鉴别相结合的便携式探测器对一部分样本进行合成大麻素和四氢大麻酚筛查。

研究结果

在所有参与研究的学校中,77.8%的学校发现了含有合成大麻素的电子烟,在查获的所有样本中,17.4%检测出了合成大麻素。这些几乎全部存在于可再填充装置和液体瓶中,一次性产品中极少。学校中含有合成大麻素的电子烟的比例与符合免费学校餐条件的学生比例呈正相关,免费学校餐是一种社会剥夺指标(皮尔逊相关系数r = 0.65,P = 0.003)。阳性样本中合成大麻素的中位数浓度为0.42(四分位间距 = 0.77)mg/mL,最高为3.6 mg/mL。相比之下,很少有样本含有四氢大麻酚(1.2%)。

结论

在英格兰抽样的27所中学中,四分之三的学校发现了含有合成大麻素的电子烟。

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