Roberg-Larsen Hanne, Abele Silvija, Demir Deniz, Dzabijeva Diana, Amundsen Sunniva F, Wilson Steven R, Bartkevics Vadims, Lundanes Elsa
Department of Chemistry, University of OsloOslo, Norway.
Faculty of Chemistry, University of LatviaRiga, Latvia.
Front Chem. 2017 Aug 28;5:62. doi: 10.3389/fchem.2017.00062. eCollection 2017.
A rugged and high throughput capillary column (cLC) LC-MS switching platform using large volume injection and on-line automatic filtration and filter back-flush (AFFL) solid phase extraction (SPE) for analysis of environmental water samples with minimal sample preparation is presented. Although narrow columns and on-line sample preparation are used in the platform, high ruggedness is achieved e.g., injection of 100 non-filtrated water samples did not result in a pressure rise/clogging of the SPE/capillary columns (inner diameter 300 μm). In addition, satisfactory retention time stability and chromatographic resolution were also features of the system. The potential of the platform for environmental water samples was demonstrated with various pharmaceutical products, which had detection limits (LOD) in the 0.05-12.5 ng/L range. Between-day and within-day repeatability of selected analytes were <20% RSD.
本文介绍了一种坚固且高通量的毛细管柱(cLC)液相色谱-质谱联用切换平台,该平台采用大体积进样以及在线自动过滤和滤器反冲洗(AFFL)固相萃取(SPE)技术,可在最少样品前处理的情况下分析环境水样。尽管该平台使用了窄柱和在线样品前处理技术,但仍实现了高耐用性,例如,注入100个未过滤的水样不会导致SPE/毛细管柱(内径300μm)压力升高/堵塞。此外,系统还具有令人满意的保留时间稳定性和色谱分辨率。该平台对环境水样的分析潜力通过各种药品得到了验证,这些药品的检测限(LOD)在0.05-12.5 ng/L范围内。选定分析物的日间和日内重复性相对标准偏差(RSD)均小于20%。