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Simultaneous In-Cell Derivatization Pressurized Liquid Extraction for the Determination of Multiclass Preservatives in Leave-On Cosmetics

机译:同时细胞内衍生化加压液体萃取法测定免洗化妆品中的多种防腐剂

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An effective one-step sample preparation methodology for the determination of multiclass preservatives in cosmetics has been developed, applying, for the first time to this kind of matrix, pressurized liquid extraction (PLE) and a very simple, cheap, and fast derivatization procedure: acetylation with acetic anhydride and pyridine. A multi-factorial experimental design has been used to evaluate and optimize the main experimental parameters potentially affecting the extraction process. In the final conditions the sample was mixed with Florisil as the dispersing sorbent and extracted with ethyl acetate for 15 min at 120 deg C. One of the main goals of this work was to demonstrate the possibility of carrying out direct cosmetic preservative acetylation by simply adding the derivatization reagents into the PLE cell. The extract was then analyzed by GC/MS without any further cleanup or concentration step. The accuracy, precision, linearity, and detection limits (LODs) were evaluated to assess the performance of the proposed method. Quantitative recoveries were obtained, and relative standard deviation values were lower than 10percent in all cases. The obtained LODs ranged from 0.000004percent to 0.0001percent (w/w), values far below the established restrictions in the European Cosmetics Regulation, making this multicomponent analytical method suitable for routine control. Finally, several cosmetic products such as moisturizing and antiwrinkle creams and lotions, hand creams, sunscreen and after-sun creams, baby lotions, and hair care products were analyzed. All the samples contained several of the target cosmetic ingredients, in some cases at quite high concentrations, although the actual European Cosmetics Regulation was fulfilled in all cases.
机译:已经开发出一种有效的一步法样品制备方法,用于测定化妆品中的多种防腐剂,首次将加压液体萃取(PLE)应用于这种基质,并且该方法非常简单,廉价且快速衍生化:用乙酸酐和吡啶进行乙酰化。多因素实验设计已用于评估和优化可能影响萃取过程的主要实验参数。在最终条件下,将样品与Florisil混合作为分散吸附剂,并在120℃下用乙酸乙酯萃取15分钟。这项工作的主要目标之一是证明通过简单地添加直接进行化妆品防腐剂乙酰化的可能性衍生化试剂进入PLE细胞。然后通过GC / MS分析提取物,而无需任何进一步的纯化或浓缩步骤。评估准确性,精密度,线性和检测极限(LOD),以评估所提出方法的性能。获得了定量回收率,并且所有情况下的相对标准偏差值均低于10%。获得的LOD范围为0.000004%至0.0001%(w / w),该值远远低于《欧洲化妆品法规》中规定的限制,从而使该多组分分析方法适合常规控制。最后,分析了几种化妆品,例如保湿和抗皱面霜和乳液,护手霜,防晒霜和防晒霜,婴儿乳液和护发产品。尽管在所有情况下均符合实际的《欧洲化妆品法规》,但所有样品中都包含几种目标化妆品成分,在某些情况下浓度很高。

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