Waters Corporation, Milford, MA, USA; Analytical & Environmental Sciences Division, King's College London, Stamford Street, London, UK.
Waters Corporation, Milford, MA, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2014 Sep 1;966:200-7. doi: 10.1016/j.jchromb.2014.04.017. Epub 2014 Apr 18.
Ultra high resolution SFC-MS (on sub-2μm particles) coupled to mass spectrometry has been evaluated for the metabolic profiling of rat and dog bile. The selectivity of the SFC separation differed from that seen in previous reversed-phase UPLC-MS studies on bile, with the order of elution for analytes such as e.g., the bile acids showing many differences. The chromatography system showed excellent stability, reproducibility and robustness with relative standard deviation of less than 1% for retention time obtained over the course of the analysis. SFC showed excellent chromatographic performance with chromatographic peak widths in the order of 3s at the base of the peak. The use of supercritical fluid carbon dioxide as a mobile phase solvent also reduced the overall consumption of organic solvent by a factor of 3 and also reduced the overall analysis time by a factor of 30% compared to reversed-phase gradient LC. SFC-MS appear complementary to RPLC for the metabolic profiling of complex samples such as bile.
超高效分辨率 SFC-MS(亚 2μm 粒径颗粒)与质谱联用,用于大鼠和犬胆汁的代谢组学分析。SFC 分离的选择性与之前胆汁的反相 UPLC-MS 研究不同,洗脱顺序如胆汁酸等分析物有许多差异。该色谱系统具有出色的稳定性、重现性和稳健性,分析过程中保留时间的相对标准偏差小于 1%。SFC 具有出色的色谱性能,色谱峰宽在峰底处约为 3s。与反相梯度 LC 相比,使用超临界二氧化碳作为流动相溶剂还将有机溶剂的总消耗量减少了 3 倍,总分析时间减少了 30%。SFC-MS 似乎可与 RPLC 互补,用于代谢组学分析复杂样品,如胆汁。