Dasenaki Marilena E, Thomaidis Nikolaos S
Laboratory of Analytical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimioupolis Zografou, 157 71, Athens, Greece.
Anal Bioanal Chem. 2015 Jun;407(15):4229-45. doi: 10.1007/s00216-015-8654-x. Epub 2015 Apr 9.
A fast and sensitive multianalyte/multiclass high-performance reversed-phase liquid chromatography-tandem mass spectrometry (LC-MS/MS) method was developed and validated for the simultaneous analysis of 89 pharmaceuticals in influent and effluent wastewater samples. The method developed consists of solid-phase extraction (SPE) using a hydrophilic-lipophilic-balanced polymer followed by LC-MS/MS with electrospray ionization in both positive mode and negative mode. The selected pharmaceuticals belong to different classes--analgesic/anti-inflammatory drugs, antibiotics, antiepileptics, β-adrenoceptor-blocking drugs, lipid-regulating agents, statins, and many others. The influence of the mobile phase composition on the sensitivity of the method, and the optimum conditions for SPE in terms of analyte recovery were extensively studied. Chromatographic separation was performed on an Atlantis T3 (100 mm × 2.1 mm, 3-μm) column with a gradient elution using methanol-0.01% v/v formic acid as the mobile phase in positive ionization mode determination and methanol-acetonitrile-1 mM ammonium formate as the mobile phase in negative ionization mode determination. Recoveries for most of the compounds ranged from 50 to 120%. Precision, expressed as relative standard deviations, was always below 15%, and the method detection limits ranged from 1.06 ng/L (4-hydroxyomeprazole) to 211 ng/L (metformin). Finally, the method developed was applied to the determination of target analytes in wastewater samples obtained from the Psyttalia wastewater treatment plant, Athens, Greece. Although SPE of pharmaceuticals from wastewater samples and their determination by LC-MS/MS is a well-established technique, the uniqueness of this study lies in the simultaneous determination of a remarkable number of compounds belonging to more than 20 drug classes. Moreover, the LC-MS/MS method has been thoroughly optimized so that maximum sensitivity is achieved for most of the compounds, making the proposed method a valuable tool for pharmaceutical analysis in influent and effluent wastewater at the sub-nanogram per liter level.
建立并验证了一种快速灵敏的多分析物/多类别高效反相液相色谱 - 串联质谱(LC-MS/MS)方法,用于同时分析进水和出水废水样品中的89种药物。所开发的方法包括使用亲水亲脂平衡聚合物进行固相萃取(SPE),然后在正模式和负模式下通过电喷雾电离进行LC-MS/MS分析。所选药物属于不同类别——镇痛/抗炎药、抗生素、抗癫痫药、β - 肾上腺素受体阻滞剂、脂质调节剂、他汀类药物等。广泛研究了流动相组成对方法灵敏度的影响以及就分析物回收率而言SPE的最佳条件。在Atlantis T3(100 mm×2.1 mm,3 - μm)柱上进行色谱分离,在正离子模式测定中使用甲醇 - 0.01% v/v甲酸作为流动相进行梯度洗脱,在负离子模式测定中使用甲醇 - 乙腈 - 1 mM甲酸铵作为流动相。大多数化合物的回收率在50%至120%之间。以相对标准偏差表示的精密度始终低于15%,方法检测限范围为1.06 ng/L(4 - 羟基奥美拉唑)至211 ng/L(二甲双胍)。最后,将所开发的方法应用于测定从希腊雅典的Psyttalia废水处理厂获得的废水样品中的目标分析物。虽然从废水样品中固相萃取药物并通过LC-MS/MS进行测定是一种成熟的技术,但本研究的独特之处在于同时测定属于20多个药物类别的大量化合物。此外,LC-MS/MS方法已得到充分优化,以便对大多数化合物实现最大灵敏度,使所提出的方法成为用于进水和出水废水亚纳克每升水平药物分析的有价值工具。