Hyung Seok-Won, Kim Byungjoo
Division of Chemical and Medical Metrology, Korea Research Institute of Standards and Science, Daejeon, South Korea.
Biomed Chromatogr. 2020 Jul;34(7):e4831. doi: 10.1002/bmc.4831. Epub 2020 Apr 1.
Dual-mode heart-cutting two-dimensional liquid chromatography (DMHC 2D-LC) was applied to isotope dilution mass spectrometry (IDMS) to reduce the bias in the quantitative analysis of a target analyte present in a limited quantity in human plasma. Based on a Waters I-Class LC system, the DMHC 2D-LC system was operated in one- and two-dimensional modes to facilitate the determination of heart-cutting time and the efficient trapping of the target LC eluate. Experiments to determine the feasibility of coupling with IDMS were performed with triple quadrupole mass spectrometry using folic acid standards and/or C -folic acid. To validate the performance of the DMHC 2D-LC/IDMS system on a complex sample, human plasma was analyzed for folic acid and the result was compared with that obtained using conventional single-column LC. The total run time of the DMHC 2D-LC system was 20 min, the same as that of the single-column LC system. The peak profile of the spiked C -folic acid obtained with single-column LC/MS was affected by matrix effects, but resolved with DMHC 2D-LC/MS, thus improving the accuracy of the analysis. The DMHC 2D-LC/IDMS system showed reliable performance in analyzing the target analyte in human plasma, eliminating matrix effects and saving analysis time.
将双模式中心切割二维液相色谱(DMHC 2D-LC)应用于同位素稀释质谱法(IDMS),以减少人血浆中存在的痕量目标分析物定量分析中的偏差。基于沃特世I-Class液相色谱系统,DMHC 2D-LC系统以一维模式和二维模式运行,以方便确定中心切割时间并有效捕集目标液相色谱洗脱液。使用叶酸标准品和/或¹³C-叶酸,通过三重四极杆质谱进行了与IDMS联用可行性的实验。为验证DMHC 2D-LC/IDMS系统对复杂样品的性能,分析了人血浆中的叶酸,并将结果与使用传统单柱液相色谱法得到的结果进行比较。DMHC 2D-LC系统的总运行时间为20分钟,与单柱液相色谱系统相同。单柱LC/MS得到的加标¹³C-叶酸的峰形受基质效应影响,但DMHC 2D-LC/MS可将其分离,从而提高了分析的准确性。DMHC 2D-LC/IDMS系统在分析人血浆中的目标分析物时表现出可靠的性能,消除了基质效应并节省了分析时间。