高效液相色谱法同时测定化妆品乳剂中抗坏血酸和烟酰胺的含量

C. Spagnol, Camila Jandira Martins, A. Kogawa, V. Isaac, H. R. Salgado, M. Correa
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引用次数: 0

摘要

采用高效液相色谱法同时测定化妆品乳剂中抗坏血酸和烟酰胺的含量。烟酰胺和抗坏血酸是强抗氧化剂。AA具有优异的还原能力,保护电池不被氧化。NIC是NADPH和NADH的前体,具有很强的还原能力,具有很强的抗氧化能力。建立了一种快速、可持续的高效液相色谱法同时测定化妆品乳液中AA和NIC的方法。为此,使用含有0.01%三氟乙酸和乙醇(95:5,v/v)的纯净水,对称屏蔽柱(4.6 x 250 mm, 5 μm), 20µL, 1.7 mL min-1, 254 nm。按照ICH、AOAC和ANVISA标准对该方法进行了线性度、检测定量限、选择性、准确度、精密度和鲁棒性等参数的验证。该方法快速(AA为2.7 min, NIC为3.2 min),在20 ~ 80 μ mL-1范围内呈线性(AA为0.9991,NIC为r = 0.9999),精密度(AA和NIC的RSD < 5%),准确度(AA为0.53%,NIC为1.02%),对乳状液基质具有选择性,对流速、进样量和纯化水源的微小变化具有较强的适应性。本研究为化妆品乳剂研究中AA和NIC的定量提供了一种生态替代方法,考虑了当前绿色和可持续分析化学的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New, fast and sustainable method by hplc for simultaneous determination of ascorbic acid and nicotinamide in the study of cosmetic emulsions
A NEW, FAST AND SUSTAINABLE METHOD BY HPLC FOR SIMULTANEOUS DETERMINATION OF ASCORBIC ACID AND NICOTINAMIDE IN COSMETIC EMULSION Nicotinamide (NIC) and ascorbic acid (AA) are powerful antioxidants. AA presents excellent reducing power and protects the cell from oxidation. NIC is a precursor of NADPH and NADH, substances that present a strong reduction power, resulting in a huge antioxidant capacity. A new, fast and sustainable method using high performance liquid chromatography was developed and validated for simultaneous quantification of AA and NIC in cosmetic emulsion. For this, purified water with 0.01 % of trifluoracetic acid and ethanol (95:5, v/v), Symmetry Shield column (4.6 x 250 mm, 5 μm), 20 µL, 1.7 mL min-1 at 254 nm was used. The method was validated according to the ICH, AOAC and ANVISA, following parameters of linearity, detection and quantification limits, selectivity, accuracy, precision and robustness. The method was fast (2.7 min for AA and 3.2 min for NIC), linear between 20 and 80 μg mL-1 (r = 0.9991 for AA and r = 0.9999 for NIC), precise (RSD <5 % for AA and NIC), accuracy (RSD 0.53 % for AA and 1.02 % for NIC), selective for the emulsion base, robust to small changes in flow rate, injection volume and purified water source. This work shows an ecologically alternative for the quantification of AA and NIC in the study of cosmetic emulsion by HPLC, which contemplates the requirements of the current green and sustainable analytical chemistry.
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