Department of Chemistry, East Carolina University, Greenville, NC 27858, U.S.A.
Int J Cosmet Sci. 2012 Oct;34(5):466-76. doi: 10.1111/j.1468-2494.2012.00738.x.
Several high-temperature liquid chromatography (HTLC) and subcritical water chromatography (SBWC) methods have been successfully developed in this study for separation and analysis of preservatives contained in Olay skincare creams. Efficient separation and quantitative analysis of preservatives have been achieved on four commercially available ZirChrom and Waters XBridge columns at temperatures ranging from 100 to 200°C. The quantification results obtained by both HTLC and SBWC methods developed for preservatives analysis are accurate and reproducible. A large number of replicate HTLC and SBWC runs also indicate no significant system building-up or interference for skincare cream analysis. Compared with traditional HPLC separation carried out at ambient temperature, the HTLC methods can save up to 90% methanol required in the HPLC mobile phase. However, the SBWC methods developed in this project completely eliminated the use of toxic organic solvents required in the HPLC mobile phase, thus saving a significant amount of money and making the environment greener. Although both homemade and commercial systems can accomplish SBWC separations, the SBWC methods using the commercial system for preservative analysis are recommended for industrial applications because they can be directly applied in industrial plant settings.
本研究成功开发了几种高温液相色谱(HTLC)和亚临界水色谱(SBWC)方法,用于分离和分析玉兰油护肤品中的防腐剂。在四种市售的 ZirChrom 和 Waters XBridge 柱上,在 100 至 200°C 的温度范围内,实现了防腐剂的有效分离和定量分析。HTLC 和 SBWC 方法开发的防腐剂分析的定量结果准确且重现性好。大量重复的 HTLC 和 SBWC 运行也表明,护肤品分析中没有明显的系统累积或干扰。与在环境温度下进行的传统 HPLC 分离相比,HTLC 方法可节省 HPLC 流动相中所需的甲醇多达 90%。然而,本项目中开发的 SBWC 方法完全消除了 HPLC 流动相中所需的有毒有机溶剂的使用,从而节省了大量资金并使环境更加环保。尽管自制和商业系统都可以完成 SBWC 分离,但推荐使用商业系统进行防腐剂分析的 SBWC 方法用于工业应用,因为它们可以直接应用于工业工厂设置。