Université de Lyon - Institut des Sciences Analytiques, UMR 5280 CNRS-Equipe TRACES, Université Lyon 1, ENS-Lyon, 5 rue de la Doua, 69100, Vileurbanne, France.
Anal Bioanal Chem. 2014 Feb;406(5):1493-507. doi: 10.1007/s00216-013-7551-4. Epub 2013 Dec 29.
The use of polymer materials in industry for product packaging is increasing. The presence of additives in the polymer matrix enables the modification or improvement of the properties and performance of the polymer, but these industries are concerned regarding the extractability of these additives. The quantification of these additives is particularly challenging because of the presence of these substances as contaminants in all the analytical equipment and the diversity of their physicochemical properties. In this context, a multi-residue analytical method was developed for the trace analysis of the twenty main additives (and their degradation products) authorized in plastic products such as pharmaceutical packaging (e.g., antioxidants, release agents, and light absorbers). This analytical method consisted of a solid phase extraction (SPE) followed by an analysis using ultra-high performance liquid chromatography coupled to a tandem mass spectrometer (UHPLC-MS/MS). A comparison of two ionization interfaces and the optimization of the extraction procedure were discussed. The influence of the quality of the solvent type (distilled versus not distilled) and the nature of the SPE cartridges (Polypropylene versus Teflon(®)) were demonstrated. The optimized method exhibited a quantification limit lower than 20 ng mL(-1) and recoveries between 70 % and 120 % for all compounds. Finally, the method was validated according to the ICH directive and was subsequently applied to the extraction of polymers under different pH conditions and storage temperatures. To the best of our knowledge, this study presents the first methodology allowing the simultaneous quantification of 24 additives at low ng mL(-1).
聚合物材料在工业产品包装中的应用正在增加。聚合物基体中添加剂的存在能够改变或提高聚合物的性能,但这些行业关注的是这些添加剂的可提取性。由于这些物质作为所有分析设备中的污染物存在,以及它们物理化学性质的多样性,这些添加剂的定量分析尤其具有挑战性。在这种情况下,开发了一种用于痕量分析 20 种主要添加剂(及其降解产物)的多残留分析方法,这些添加剂被授权用于药品包装等塑料产品(例如抗氧化剂、脱模剂和光吸收剂)。该分析方法包括固相萃取(SPE),然后使用超高效液相色谱与串联质谱联用(UHPLC-MS/MS)进行分析。讨论了两种离子化接口的比较和萃取程序的优化。还证明了溶剂类型(蒸馏与非蒸馏)质量和 SPE 小柱(聚丙烯与聚四氟乙烯(®))性质的影响。优化后的方法对所有化合物的定量限均低于 20ng/mL,回收率在 70%至 120%之间。最后,根据 ICH 指令对该方法进行了验证,并随后将其应用于不同 pH 值条件和储存温度下聚合物的提取。据我们所知,这项研究首次提出了能够同时定量分析 24 种低 ng/mL 添加剂的方法。