Hua Yousheng, Jenke Dennis
Baxter Healthcare Corporation, Technology Resources Division, Round Lake, IL 60073, USA.
J Chromatogr Sci. 2012 Mar;50(3):213-27. doi: 10.1093/chromsci/bmr049.
Organic extractables (substances extracted from materials used in pharmaceutical packaging) are discovered, identified, and quantified via screening of extracts with analytical methods including liquid chromatography with mass spectrometric detection (LC-MS). Because extractables include a large number of diverse compounds that are typically present in plastic extracts at low levels, the LC-MS methods must be broad scope and sensitive. To accomplish these objectives, screening studies typically couple gradient reversed-phase separations with electrospray MS detection (both positive and negative ion modes). While such methods are generally applicable for a number of extractables, they are not optimal for some commonly encountered extractables due to either poor chromatographic performance (e.g., peak tailing) or poor MS response. Modifications to mobile phase composition (e.g., pH adjustment) were examined to improve the performance of an LC-MS screening method. The use of 0.1% acetic acid with 1 mM ammonium acetate (pH 3.6) as the aqueous portion of the mobile phase provided favorable sensitivities for a number of extractables both in positive and negative ion modes. In positive ion mode, the acidic mobile phase improved responses for moderately weak basic compounds by increasing their degree of protonation. For very weak basic compounds such as amides, ammonium ions in the mobile phase promoted proton adduct responses. In negative ion mode, an acidic mobile phase containing acetate anion improved ESI responses for acidic compounds, primarily due to gas phase effects.
有机可提取物(从药品包装材料中提取的物质)通过使用包括液相色谱-质谱检测(LC-MS)在内的分析方法对提取物进行筛选来发现、鉴定和定量。由于可提取物包括大量不同的化合物,这些化合物通常在塑料提取物中以低水平存在,因此LC-MS方法必须具有广泛的适用范围和高灵敏度。为了实现这些目标,筛选研究通常将梯度反相分离与电喷雾质谱检测(正离子和负离子模式)相结合。虽然这些方法通常适用于多种可提取物,但由于色谱性能不佳(例如峰拖尾)或质谱响应不佳,它们对于一些常见的可提取物并非最佳选择。研究了流动相组成的改变(例如pH调节)以提高LC-MS筛选方法的性能。使用0.1%乙酸与1 mM乙酸铵(pH 3.6)作为流动相的水相部分,在正离子和负离子模式下都为多种可提取物提供了良好的灵敏度。在正离子模式下酸性流动相通过增加中等强度弱碱性化合物的质子化程度来改善其响应。对于非常弱的碱性化合物如酰胺,流动相中的铵离子促进了质子加合物响应。在负离子模式下,含有乙酸根阴离子的酸性流动相改善了酸性化合物的电喷雾电离(ESI)响应,主要是由于气相效应。