Yang Piao-Piao, Huang Wei, Li Li-Xia, Liu Hong
Hubei Institute for Drug Control, Hubei Engineering Research Center for Drug Quality Control, Wuhan 430075, China.
Se Pu. 2023 Mar;41(3):250-256. doi: 10.3724/SP.J.1123.2022.06010.
At present, new prohibited substances are becoming more common illegal additions in cosmetics. Clobetasol acetate is a new glucocorticoid, which is not covered in the current national standards and is a homologue of clobetasol propionate. A method was established for the determination of clobetasol acetate as a new glucocorticoid (GC) in cosmetics by ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). Five common cosmetic matrices were suitable for this new method: creams, gels, clay masks, masks and lotions. Four pretreatment methods were compared: direct extraction by acetonitrile, PRiME pass-through column purification, solid-phase extraction (SPE) purification, and QuEChERS purification. Further, the effects of different extraction efficiencies of the target compound, such as extraction solvents and extraction time, were investigated. The MS parameters, such as ion mode, cone voltage and collision energy of ion pairs of the target compound, were optimized. The chromatographic separation conditions and response intensities of the target compound in different mobile phases were compared. Based on the experimental results, the optimal extraction method was determined to be direct extraction, wherein the samples were vortex dispersed with acetonitrile, ultrasonic extraction over 30 min and filtered by a 0.22 μm organic millipore filter, and then the samples were detected by UPLC-MS/MS. The concentrated extracts were separated on a Waters CORTECS C column (150 mm×2.1 mm, 2.7 μm), where the water and acetonitrile were used as the mobile phases for gradient elution. The target compound was detected with the multiple reaction monitoring (MRM) mode under electrospray ionization and positive ion scanning (ESI). Quantitative analysis was performed by matrix matching standard curve. Under the optimum conditions, the target compound had good linear fitting in the range of 0.9-37 μg/L. The linear correlation coefficient () was greater than 0.99, the limit of quantification (LOQ) of the method was 0.09 μg/g and the limit of detection (LOD) was 0.03 μg/g for these five different cosmetic matrices. The recovery test was conducted under three spiked levels: 1, 2 and 10 times of LOQ. The recoveries of the tested substance were between 83.2% and 103.2% in these five cosmetic matrices, and the relative standard deviations (RSDs, =6) were between 1.4% and 5.6%. This method was used to screen cosmetic samples of different matrix types, and a total of five positive samples were found, in which the content range of clobetasol acetate was from 1.1 to 48.1 μg/g. In conclusion, the method is simple, sensitive and reliable, and is suitable for high-throughput qualitative and quantitative screening, and the analysis of cosmetics with different matrix types. Moreover, the method provides crucial technical support and a theoretical basis for the establishment of feasible detection standards for clobetasol acetate in China, as well as for the control of the compound in cosmetics. This method has important practical significance to implement management measures of illegal additions in cosmetics.
目前,新型违禁物质正日益成为化妆品中常见的非法添加物。醋酸氯倍他索是一种新型糖皮质激素,未被现行国家标准涵盖,且是丙酸氯倍他索的同系物。建立了一种超高效液相色谱 - 串联质谱法(UPLC - MS/MS)测定化妆品中新型糖皮质激素醋酸氯倍他索的方法。五种常见化妆品基质适用于该新方法:乳膏、凝胶、泥膜、面膜和乳液。比较了四种预处理方法:乙腈直接萃取、PRiME 直通柱净化、固相萃取(SPE)净化和 QuEChERS 净化。此外,研究了不同萃取效率对目标化合物的影响,如萃取溶剂和萃取时间。优化了目标化合物的质谱参数,如离子模式、锥孔电压和离子对的碰撞能量。比较了目标化合物在不同流动相中的色谱分离条件和响应强度。基于实验结果,确定最佳萃取方法为直接萃取,即样品用乙腈涡旋分散,超声萃取 30 分钟以上,并用 0.22μm 有机微孔滤膜过滤,然后用 UPLC - MS/MS 进行检测。浓缩提取物在 Waters CORTECS C 柱(150 mm×2.1 mm,2.7μm)上分离,水和乙腈用作流动相进行梯度洗脱。目标化合物在电喷雾电离和正离子扫描(ESI)下采用多反应监测(MRM)模式进行检测。采用基质匹配标准曲线进行定量分析。在最佳条件下,目标化合物在 0.9 - 37μg/L 范围内具有良好的线性拟合。线性相关系数()大于 0.99,该方法对这五种不同化妆品基质的定量限(LOQ)为 0.09μg/g,检测限(LOD)为 0.03μg/g。在三个加标水平(LOQ 的 1、2 和 10 倍)下进行回收率试验。在这五种化妆品基质中,被测物质的回收率在 83.2%至 103.2%之间,相对标准偏差(RSDs,=6)在 1.4%至 5.6%之间。该方法用于筛选不同基质类型的化妆品样品,共发现五个阳性样品,其中醋酸氯倍他索的含量范围为 1.1 至 48.1μg/g。综上所述,该方法简便、灵敏、可靠,适用于高通量定性和定量筛选以及不同基质类型化妆品的分析。此外,该方法为我国建立可行且有效的醋酸氯倍他索检测标准以及控制化妆品中该化合物提供了关键技术支持和理论依据。该方法对实施化妆品非法添加管理措施具有重要的现实意义。