Abdel-Ghany Maha F, Abdel-Aziz Omar, Ayad Miriam F, Mikawy Neven N
J AOAC Int. 2015 Sep-Oct;98(5):1215-25. doi: 10.5740/jaoacint.14-229.
Accurate, reliable, and sensitive spectrophotometric and chemometric methods were developed for simultaneous determination of octinoxate (OMC), oxybenzone (OXY), and octocrylene (OCR) in a sunscreen formulation without prior separation steps, including derivative ratio spectra zero crossing (DRSZ), double divisor ratio spectra derivative (DDRD), mean centering ratio spectra (MCR), and partial least squares (PLS-2). With the DRSZ technique, the UV filters could be determined in the ranges of 0.5-13.0, 0.3-9.0, and 0.5-9.0 μg/mL at 265.2, 246.6, and 261.8 nm, respectively. By utilizing the DDRD technique, UV filters could be determined in the above ranges at 237.8, 241.0, and 254.2 nm, respectively. With the MCR technique, the UV filters could be determined in the above ranges at 381.7, 383.2, and 355.6 nm, respectively. The PLS-2 technique successfully quantified the examined UV filters in the ranges of 0.5-9.3, 0.3-7.1, and 0.5-6.9 μg/mL, respectively. All the methods were validated according to the International Conference on Harmonization guidelines and successfully applied to determine the UV filters in pure form, laboratory-prepared mixtures, and a sunscreen formulation. The obtained results were statistically compared with reference and reported methods of analysis for OXY, OMC, and OCR, and there were no significant differences with respect to accuracy and precision of the adopted techniques.
开发了准确、可靠且灵敏的分光光度法和化学计量学方法,用于在无需预先分离步骤的情况下同时测定防晒配方中的桂皮酸盐(OMC)、二苯甲酰甲烷(OXY)和奥克立林(OCR),包括导数比率光谱零交叉法(DRSZ)、双除数比率光谱导数法(DDRD)、平均中心化比率光谱法(MCR)和偏最小二乘法(PLS - 2)。采用DRSZ技术时,紫外线过滤剂在265.2、246.6和261.8 nm处的测定范围分别为0.5 - 13.0、0.3 - 9.0和0.5 - 9.0 μg/mL。利用DDRD技术时,紫外线过滤剂在上述范围内的测定波长分别为237.8、241.0和254.2 nm。采用MCR技术时,紫外线过滤剂在上述范围内的测定波长分别为381.7、383.2和355.6 nm。PLS - 2技术成功地分别在0.5 - 9.3、0.3 - 7.1和0.5 - 6.9 μg/mL的范围内对所检测的紫外线过滤剂进行了定量。所有方法均按照国际协调会议指南进行了验证,并成功应用于测定纯品、实验室制备的混合物以及防晒配方中的紫外线过滤剂。将所得结果与OXY、OMC和OCR的参考分析方法和已报道的分析方法进行了统计学比较,所采用技术在准确性和精密度方面没有显著差异。