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开发并验证了一种气相色谱法(GC-FID),用于定量分析电子烟香精中的香料过敏原。

Development and validation of a gas chromatography method coupled with flame ionization detector for quantitative analysis of fragrance allergens in aromas for e-cigarettes.

机构信息

Department of Toxicology, Faculty of Pharmacy, Medical University of Gdańsk, Gdańsk, Poland.

出版信息

J Sep Sci. 2021 Jun;44(11):2250-2259. doi: 10.1002/jssc.202000915. Epub 2021 Apr 9.

Abstract

Aromas can give smell and/or flavor to a variety of products in the cosmetic and food industry. They are also used as e-cigarette additives. Some of those substances are recognized as fragrance allergens and can cause allergic reactions so there is a need to control their use. Gas chromatography is the method of choice for analyzing fragrance allergens because of their low boiling points. This study aimed to develop and validate a robust and simple method for the analysis of fragrance allergens in aromas for e-cigarettes. A method using gas chromatography coupled with a flame ionization detector was developed for 25 fragrance allergens. Optimized parameters were sample diluent, internal standard, and carrier gas. The output method was the one previously developed and optimized. The linearity of the method was >0.994 over the range of 0.5-40 μg/mL. Accuracy and precision were within the acceptance range. Limits of detection and quantification were determined, and calibration curves were plotted. The method was applied to three real samples of aromas. Thirteen fragrance allergens were detected. Concentrations varied in the range of dozens to thousands of μg/mL showed that concentrations of fragrances in aromas for e-cigarettes can be high and varies among products.

摘要

香气可以为化妆品和食品工业中的各种产品提供气味和/或味道。它们也被用作电子烟添加剂。其中一些物质被认为是香料过敏原,会引起过敏反应,因此需要控制其使用。由于沸点低,气相色谱法是分析香料过敏原的首选方法。本研究旨在开发和验证一种用于分析电子烟用香气中香料过敏原的强大而简单的方法。建立了一种使用气相色谱法结合火焰离子化检测器分析 25 种香料过敏原的方法。优化了样品稀释剂、内标和载气等参数。输出方法是之前开发和优化的方法。该方法在 0.5-40μg/mL 范围内的线性度>0.994。准确度和精密度均在可接受范围内。确定了检测限和定量限,并绘制了校准曲线。该方法应用于三种电子烟用香气的实际样品。检测到 13 种香料过敏原。浓度范围在几十到几千微克/毫升之间,表明电子烟用香气中的香料浓度可能很高,且不同产品之间存在差异。

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