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超高效液相色谱-四极杆-飞行时间高分辨质谱法筛查及定量分析乳液类化妆品中9种非法抗组胺药

[Screening and quantitative analysis of nine illicit antiallergics in emulsion cosmetics by ultra-high performance liquid chromatography-quadrupole-time-of-flight high-resolution mass spectrometry].

作者信息

Wang Mengying, Chen Yechao, Tu Fengqin, Hou Jing, Yang Ming, Lu Yuepeng, Wang Yuhong, Yang Zong, Chen Dan

机构信息

Wuhan Institute for Food and Cosmetic Control, Wuhan 430014, China.

Asia Pacific Technical Support Center of SCIEX, Shanghai 200050, China.

出版信息

Se Pu. 2020 Dec 8;38(12):1423-1430. doi: 10.3724/SP.J.1123.2020.06017.

Abstract

A rapid and accurate analysis method based on ultra-high performance liquid chromatography coupled with quadrupole-time-of-flight high-resolution mass spectrometry (UPLC-Q-TOF-HRMS) was developed to screen and determine nine antiallergy drugs in emulsion cosmetics. First, a standard library of the target compounds was established. The library contained the TOF-MS information and secondary MS information such as retention time, ion addition mode, mass error, isotope distribution, mass-to-charge ratio of the parent ion, and fragment ion distribution. According to the European Union regulation (SANTE/11945/2015), the standard for the qualitative determination by HRMS was determined; that is, each compound was confirmed by two ions with a mass error below 5%, and the abundance ratio of the two ions was less than 30%. Second, the instrument conditions and sample pretreatment conditions for the determination of different compounds were optimized, and the influence of different levels of quantitative ions on the matrix effect was compared. The following observations were made:(1) the addition of 0.1% formic acid to the water phase improved the response of the chromatographic peaks; (2) among the various solvent amounts tested (4, 5, 6, 8 mL acetonitrile and 4, 5, 6, 8 mL methanol), 4 mL acetonitrile showed the best extraction efficiency; (3) PRiME HLB had a better purification effect than the other two purification columns (C18 and HLB solid-phase extraction cartridges), thus reducing the interference of impurities and ensuring good recovery of the target compounds; (4) the use of two pairs of secondary product ion quantification could significantly reduce the matrix effect of anti-allergic compounds and improve the quantification accuracy. Finally, based on the above findings, the experimental procedure was established. The lotion samples were first ultrasonically extracted with acetonitrile and purified on the PRiME HLB column. Chromatographic separation was performed on a Waters XBridge C18 column with gradient elution using 0.1% (v/v) formic acid in water and acetonitrile. Finally, the sequential window acquisition of all theoretical mass spectra (SWATH), which shows obvious advantages in continuous and high-throughput acquisition, was selected for MS data acquisition. The retention time, mass accuracy, isotope distribution, and fragment ion matching ratio were used for fast qualitative screening, while the peak areas of characteristic product ions were used for precise quantification. All the calibration curves showed good linearity (>0.99) within the tested ranges (5-100 μg/L) under the optimum conditions. The limits of quantification (LOQs) were in the range of 0.05-0.10 mg/kg. The recoveries were in the range of 65.3%-107% at three spiked levels (0.10, 0.20, and 0.60 mg/kg), with relative standard deviations (RSDs, =6) below 20%. Compared with the existing ion exchange column methods, the proposed "one-step" purification method based on PRiME HLB is simpler and more rapid, where the extraction solution is filtered directly after allowing it to pass through the column, without any subsequent washing and elution procedures. In addition, the LOQs of this method are lower than those of other LC-MS/MS methods, indicating that the proposed method has higher sensitivity. The application of SWATH data acquisition makes it possible to achieve quantification with two pairs of product ions, thus reducing the matrix effect and ensuring accuracy of the quantitative results. Therefore, the proposed method is less time-consuming and operationally convenient, and it can be used for the rapid screening and accurate quantification of antiallergics in lotion samples.

摘要

建立了一种基于超高效液相色谱-四极杆-飞行时间高分辨质谱联用(UPLC-Q-TOF-HRMS)的快速准确分析方法,用于乳液化妆品中9种抗过敏药物的筛选和测定。首先,建立了目标化合物的标准库。该库包含了保留时间、离子添加模式、质量误差、同位素分布、母离子质荷比和碎片离子分布等TOF-MS信息和二级MS信息。根据欧盟法规(SANTE/11945/2015),确定了HRMS定性测定的标准;即每个化合物由两个质量误差低于5%的离子确认,且两个离子的丰度比小于30%。其次,优化了不同化合物测定的仪器条件和样品预处理条件,并比较了不同水平定量离子对基质效应的影响。得到以下结果:(1)在水相中添加0.1%甲酸可提高色谱峰的响应;(2)在测试的各种溶剂量(4、5、6、8 mL乙腈和4、5、6、8 mL甲醇)中,4 mL乙腈的提取效率最佳;(3)PRiME HLB比其他两种净化柱(C18和HLB固相萃取柱)具有更好的净化效果,从而减少了杂质干扰并确保了目标化合物的良好回收率;(4)使用两对二级产物离子定量可显著降低抗过敏化合物的基质效应并提高定量准确性。最后,基于上述结果建立了实验方法。乳液样品首先用乙腈超声提取,然后在PRiME HLB柱上净化。采用Waters XBridge C18柱,以含0.1%(v/v)甲酸的水和乙腈进行梯度洗脱,进行色谱分离。最后,选择在连续和高通量采集方面具有明显优势的全理论质量数扫描(SWATH)进行MS数据采集。利用保留时间、质量准确性、同位素分布和碎片离子匹配率进行快速定性筛选,同时利用特征产物离子的峰面积进行精确定量。所有校准曲线在最佳条件下的测试范围内(5 - 100 μg/L)均显示出良好的线性(>0.99)。定量限(LOQs)在0.05 - 0.10 mg/kg范围内。在三个加标水平(0.10、0.20和0.60 mg/kg)下回收率在65.3% - 107%范围内,相对标准偏差(RSDs,n = 6)低于20%。与现有的离子交换柱方法相比,所提出的基于PRiME HLB的“一步”净化方法更简单、更快速,提取液通过柱子后直接过滤,无需后续的洗涤和洗脱步骤。此外,该方法的LOQs低于其他LC-MS/MS方法,表明所提出的方法具有更高的灵敏度。SWATH数据采集的应用使得用两对产物离子进行定量成为可能,从而减少了基质效应并确保了定量结果的准确性。因此,所提出的方法省时且操作方便,可用于乳液样品中抗过敏药物的快速筛选和准确定量。

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