[液相色谱-串联质谱法同时测定电子烟油中的 102 种合成大麻素]。

Zhe Yang, Li-Wei Jiang, Si-Yao Yang, Yi-di Wu, Jian-Xia Lyu
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引用次数: 0

摘要

合成大麻素(SC)是滥用最广泛的新型精神活性物质之一,比天然大麻更强,药效也更大。合成大麻素可以各种方式伪装,通常以电子烟油的形式出售。SC 属于一个大家族,其结构由带有取代基的核心、连接体、带有取代基的环和尾部组成。通过在芳香环系统中添加卤素、烷基和烷氧基等取代基,或改变烷基链的长度,可以开发出新的 SC。自所谓的第一代 SC 出现以来,随后的发展又催生了以吲哚/吲唑酰胺为基础的第八代 SC。自 2021 年 7 月 1 日起,整个 SC 类别都被列入受控物质清单,但实施过程迫切需要改进检测技术。通常情况下,每种方法仅限于检测几种 SC。由于 SC 化学成分种类繁多,更新速度快,使用单一方法测定和识别各类 SC 具有挑战性。因此,必须开发快速、灵敏、准确的定量方法,将各类 SCs 包括在内,以满足对查获的电子烟油中新 SCs 进行定性和定量分析的需求。本研究开发了一种液相色谱-串联质谱(LC-MS/MS)方法,用于同时测定电子烟油中的 102 种 SCs。对影响 SC 分离和测定的质谱和液相条件进行了优化。采用外标法成功鉴定了电子烟油中的 102 种 SCs。样品用甲醇提取。目标分析物在岛津Shim-pack GIST-HP C18 AQ色谱柱(100 mm×2.1 mm, 1.9 μm)上分离,柱温为40 ℃。流动相为 (A) 0.1% 甲酸水溶液和 (B) 甲醇-乙腈(1∶1,v/v)。梯度洗脱条件如下:0-8 分钟,55%A-15%A;8-15 分钟,15%A;15-16 分钟,15%A-55%A;16-18 分钟,55%A。流速为 0.4 mL/min,进样量为 1 μL。在多反应监测模式下,18 分钟内鉴定出 102 个 SC。每种 SC 在 1-100.0 μg/L 范围内线性关系良好,相关系数 (r) ≥0.9915。检出限为 0.01-0.30 μg/L,定量限为 0.04-0.99 μg/L,满足实际样品中 SCs 分析的要求。使用 2、10 和 50 μg/L 的标准溶液测定了 SCs 的精密度。精确度(n=6)为 0.3%-6.0%。在低浓度(2 μg/mL)、中浓度(10 μg/mL)和高浓度(50 μg/mL)电子烟油中添加 102 种 SCs,其回收率为 80.1%-119.8%。该方法在实际样品分析中性能良好。所建立的方法准确、快速、灵敏,可有效测定电子烟油中的102种SCs,满足实际定性定量分析的要求。
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[Simultaneous determination of 102 synthetic cannabinoids in electronic cigarette oil by liquid chromatography-tandem mass spectrometry].

Synthetic cannabinoids (SCs), which are among the most widely abused new psychoactive substances, are much more potent and have greater efficacy than natural cannabis. SCs can be disguised in various ways and are commonly sold in the form of electronic cigarette oil. SCs belong to a large family with structures consisting of a core with substituents, linker, ring with substituents, and tail. New SCs can be developed by adding substituents, such as halogen, alkyl, and alkoxy groups, to the aromatic ring system or by changing the alkyl chain length. Since the emergence of so-called first-generation SCs, subsequent developments have led to eighth-generation indole/indazole amide-based SCs. As of July 1, 2021, the entire category of SCs was added to the list of controlled substances, but implementation requires urgent improvements in detection technologies. Typically, each method is limited to a few SCs. Owing to the vast number of chemically diverse SCs and their fast update speed, the determination and identification of various types of SCs using a single method is challenging. Therefore, rapid, sensitive, and accurate quantitative methods that includes various types of SCs must be developed to meet the demand for the qualitative and quantitative analysis of new SCs in seized electronic cigarette oil. In this study, a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method was developed for the simultaneous determination of 102 SCs in electronic cigarette oil. The mass spectrometry and liquid-phase conditions influencing SC separation and determination were optimized. Using the external standard method, 102 SCs were successfully identified in electronic cigarette oil. The samples were extracted using methanol. Target analytes were separated on a Shimadzu Shim-pack GIST-HP C18 AQ column (100 mm×2.1 mm, 1.9 μm) at a column temperature of 40 ℃. The mobile phases consisted of (A) 0.1% formic acid aqueous solution and (B) methanol-acetonitrile (1∶1, v/v). The gradient elution conditions were as follows: 0-8 min, 55%A-15%A; 8-15 min, 15%A; 15-16 min, 15%A-55%A; 16-18 min, 55%A. The flow rate was 0.4 mL/min and the injection volume was 1 μL. Operating in the multiple reaction monitoring mode, the 102 SCs were identified within 18 min. Each SC exhibited a good linear relationship in the range of 1-100.0 μg/L with a correlation coefficient (r)≥0.9915. The limits of detection were 0.01-0.30 μg/L and the limits of quantification were 0.04-0.99 μg/L, which meet the requirements for analyzing SCs in actual samples. Precision was determined using standard solutions with 2, 10, and 50 μg/L of the SCs. The precisions (n=6) were 0.3%-6.0%. The recoveries of the 102 SCs, as evaluated by spiking electronic cigarette oil at low (2 μg/mL), medium (10 μg/mL), and high (50 μg/mL) levels, were 80.1%-119.8%. Good performance was observed for the analysis of real samples. The developed method is accurate, rapid, sensitive, and effective for the determination of the 102 SCs in electronic cigarette oil, satisfying the requirements for practical qualitative and quantitative analysis.

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