Simultaneous Analytical Method for Various Paraben and Alcohol Preservatives in Supposedly Natural and Organic Cosmetics by Off-line SPE–UHPLC–DAD and LC–MS/MS

IF 1.2 4区 化学 Q4 BIOCHEMICAL RESEARCH METHODS Chromatographia Pub Date : 2024-09-11 DOI:10.1007/s10337-024-04362-8
Kyoung-Moon Han, In Suk Woo, Chae Gyeong Park, You Kyung Kim, Yoon Ji Yang, Bo Reum Park, Jang Duck Choi, Kyung Hun Son
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Abstract

Preservatives can be used in natural and organic cosmetics to prevent quality deterioration during distribution and use, but the ingredients permitted are limited in the Republic of Korea. A method of simultaneous analysis was developed to monitor natural and organic cosmetics distributed online for the presence of 15 illegally used preservatives. Considering the complexities of the cosmetic matrices, an optimized sample preparation method is essential. Therefore, we developed the optimal purification method by comparing three preparation methods: QuEChERS, high-speed centrifugation, and solid-phase extraction (SPE). The SPE method, which exhibited the most favorable results in matrix reduction, was employed. To establish the SPE-ultra-high-performance liquid chromatography-diode array detection method, factors such as the mobile phase and column were optimized. The optimal separation of the 15 preservatives was observed under the following conditions: mobile phase A comprising 0.1% phosphoric acid in water with 0.5 mM sodium hexanesulfonate and a C8 column (1.7 μm, 2.1 × 150 mm) as the stationary phase. The linear correlation coefficients were > 0.9998, and the limits of detection and quantitation ranged from 0.05 to 0.67 and 0.15 to 2.02 μg mL−1, respectively. Using the established analytical method, illegally used preservatives were detected in products claimed to be natural and organic cosmetics sold on the market, and these findings were subsequently verified using liquid chromatography-tandem mass spectrometry. Six out of 47 samples contained phenoxyethanol and parabens. Therefore, this method will help manage the addition of illegal preservatives to natural and organic cosmetics.

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利用离线 SPE-UHPLC-DAD 和 LC-MS/MS 同时分析据称天然和有机化妆品中的各种对羟基苯甲酸酯和酒精防腐剂的方法
防腐剂可用于天然和有机化妆品,以防止在销售和使用过程中质量下降,但大韩民国允许使用的成分有限。本研究开发了一种同步分析方法,用于监测网上销售的天然和有机化妆品中是否含有 15 种非法使用的防腐剂。考虑到化妆品基质的复杂性,优化的样品制备方法至关重要。因此,我们通过比较三种制备方法,开发出了最佳纯化方法:QuEChERS、高速离心法和固相萃取法(SPE)。其中,固相萃取(SPE)法在减少基质方面效果最佳。为了建立固相萃取-超高效液相色谱-二极管阵列检测方法,对流动相和色谱柱等因素进行了优化。在以下条件下,15 种防腐剂得到了最佳分离:流动相 A 为 0.1% 磷酸水溶液加 0.5 mM 己烷磺酸钠,固定相为 C8 色谱柱(1.7 μm,2.1 × 150 mm)。线性相关系数为 0.9998,检出限和定量限分别为 0.05 至 0.67 μg mL-1 和 0.15 至 2.02 μg mL-1。利用既定的分析方法,在市场上销售的号称天然和有机化妆品的产品中检测到了非法使用的防腐剂,随后利用液相色谱-串联质谱法对这些检测结果进行了验证。47 个样品中有 6 个含有苯氧乙醇和对羟基苯甲酸酯。因此,这种方法将有助于管理在天然和有机化妆品中添加非法防腐剂的行为。
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文献相关原料
公司名称
产品信息
阿拉丁
chlorphenesin
阿拉丁
phenoxyethanol
来源期刊
Chromatographia
Chromatographia 化学-分析化学
CiteScore
3.40
自引率
5.90%
发文量
103
审稿时长
2.2 months
期刊介绍: Separation sciences, in all their various forms such as chromatography, field-flow fractionation, and electrophoresis, provide some of the most powerful techniques in analytical chemistry and are applied within a number of important application areas, including archaeology, biotechnology, clinical, environmental, food, medical, petroleum, pharmaceutical, polymer and biopolymer research. Beyond serving analytical purposes, separation techniques are also used for preparative and process-scale applications. The scope and power of separation sciences is significantly extended by combination with spectroscopic detection methods (e.g., laser-based approaches, nuclear-magnetic resonance, Raman, chemiluminescence) and particularly, mass spectrometry, to create hyphenated techniques. In addition to exciting new developments in chromatography, such as ultra high-pressure systems, multidimensional separations, and high-temperature approaches, there have also been great advances in hybrid methods combining chromatography and electro-based separations, especially on the micro- and nanoscale. Integrated biological procedures (e.g., enzymatic, immunological, receptor-based assays) can also be part of the overall analytical process.
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