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首页> 外文期刊>The Journal of automatic chemistry >Development and Validation of a Method for the Analysis of Zinc Oxide in Cosmetic Matrices by Flame Atomic Absorption Spectroscopy
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Development and Validation of a Method for the Analysis of Zinc Oxide in Cosmetic Matrices by Flame Atomic Absorption Spectroscopy

机译:火焰原子吸收光谱法分析化妆品矩阵氧化锌的开发和验证

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A fast and simple method for the extraction and Flame Atomic Absorption Spectroscopy (FAAS) quantification of ZnO in different cosmetic matrices, including lipsticks, water-in-oil foundations, and oil-in-water creams, was developed and validated, according to the International Council for Harmonization of Technical Requirements for Pharmaceuticals for Human Use (ICH) and the United States Pharmacopeial Convention guidelines. The sample preparation consisted of an ultrasound-assisted ethanolic extraction of ZnO followed by digestion with 1?M nitric acid (HNO_(3)). Samples were analyzed by Flame Atomic Absorption Spectroscopy (FAAS). Specificity, linearity, the limit of detection (LOD), the limit of quantification (LOQ), sensitivity, precision, and accuracy parameters were studied. The robustness of the method was evaluated with a five-variable Youden–Steiner model. The method was specific for ZnO, and the extraction procedure did not affect the stability of the signal compared to the background. The method was linear in the range 0.2–1.0?mg/L with LOD/LOQ values equal to 0.0156 (mg·L~(?1))/0.0473 (mg·L~(?1)), 0.0098 (mg·L~(?1))/0.0297 (mg·L~(?1)), 0.0113 (mg·L~(?1))/0.0341 (mg·L~(?1)), and 0.0131 (mg·L~(?1))/0.0397 (mg·L~(?1)), respectively, for raw material, lipstick, liquid foundation, and emulsion matrices. Regarding precision, the %RSD values were below 3.0% for repeatability and intermediate precision. Global reproducibility RSD was below 8.0% for all matrices. The percentage of recovery was not statistically different from 100% in all cases. The final concentration was found to be a critical variable for all matrices except for the raw material. The variables associated with the extraction step (ethanol volume, bath temperature, and extraction time) were critical in the extraction of liquid foundations and cream emulsions. The method reduces the number and concentration of mineral acids spent on the digestion of ZnO, and its application is extendable to raw materials. This development is an adequate tool for routine analysis and cosmetic quality control of chemically different products that contain ZnO as ultraviolet radiation (UV) filter, to guarantee regulatory compliance and ensure the safety and efficacy of products delivered to consumers.
机译:根据“的不同化妆品矩阵”(包括唇膏),包括唇膏,水基础和水乳膏的ZnO的萃取和火焰原子吸收光谱(FAAS)定量的快速简便的方法,并验证国际委员会为人类使用的药物(ICH)和美国药所法的药物技术要求协调。样品制剂由ZnO的超声辅助乙醇萃取组成,然后用1·硝酸(HNO_(3))消化。通过火焰原子吸收光谱(FAAS)分析样品。研究了特异性,线性度,检测极限(LOD),量化限制(LOQ),灵敏度,精度和准确性参数。用五变量YOUDEN-Steiner模型评估该方法的稳健性。该方法对于ZnO特异,并且与背景相比,提取过程不影响信号的稳定性。该方法的线性为0.2-1.0·mg / l,LOD / LOQ值等于0.0156(Mg·L〜(α1))/ 0.0473(Mg·L〜(α1)),0.0098(Mg·L. 〜(?1))/ 0.0297(mg·l〜(α1)),0.0113(mg·l〜(α1))/ 0.0341(mg·l〜(α1))和0.0131(mg·l〜 (?1))/ 0.0397(Mg·L〜(α1))分别用于原料,口红,液体基础和乳液基质。关于精度,可重复性和中间精度%RSD值低于3.0%。全局再现性RSD对所有矩阵的RSD低于8.0%。在所有情况下,恢复百分比与100%没有统计学不同。发现最终浓度是除原料外的所有基质的关键变量。与提取步骤(乙醇体积,浴温和提取时间)相关的变量在提取液体基础和乳霜乳液中至关重要。该方法降低了在ZnO消化中花费的矿物酸的数量和浓度,其应用可扩展到原料。该开发是常规分析和化学不同产品的化学质量控制的适当工具,其含有ZnO作为紫外线辐射(UV)过滤器,以保证法规遵从性,并确保产品为消费者提供的安全性和有效性。

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