Geyer Roland, Peacock Aaron D, White David C, Lytle Cory, Van Berkel Gary J
Center for Biomarker Analysis, University of Tennessee, 10515 Research Drive, Knoxville 37932-2575, USA.
J Mass Spectrom. 2004 Aug;39(8):922-9. doi: 10.1002/jms.670.
An atmospheric pressure photoionization (APPI) source and an atmospheric pressure chemical ionization (APCI) source were compared for the selective detection of microbial respiratory ubiquinone and menaquinone isoprenologues using tandem mass spectrometry. Ionization source- and compound mass-dependent parameters were optimized individually for both sources, using the available quinone standards. Detection levels for the two ion sources were determined with ubiquinone-6 (UQ6) and menaquinone-4 (MK4, vitamin K2) standards using flow injection analysis and selected reaction monitoring (SRM). With APPI the calculated lower limit of detection (LLOD) was 1.7 fmol microl(-1) for UQ6 and 2.2 fmol microl(-1) for MK4 at a signal-to-noise ratio of 3. These LLODs were at least three times lower than with APCI. The selectivity of detection afforded by SRM detection reduced complex mixture analysis to 3 min per sample by eliminating the need for chromatographic separations. The detection method was successfully applied to quinone quantification in a variety of environmental samples and cell cultures. Adequate amounts of respiratory quinones can be extracted and quantified from samples containing as low as 2 x 10(7) cells.
采用串联质谱法,对大气压光电离(APPI)源和大气压化学电离(APCI)源进行比较,以选择性检测微生物呼吸醌和甲基萘醌类异戊二烯化合物。使用现有的醌标准品,分别针对两种源对电离源和化合物质量相关参数进行了优化。使用流动注射分析和选择反应监测(SRM),以泛醌-6(UQ6)和甲基萘醌-4(MK4,维生素K2)标准品测定了两种离子源的检测水平。对于APPI,在信噪比为3时,计算得出的UQ6检测下限(LLOD)为1.7 fmol μL-1,MK4为2.2 fmol μL-1。这些LLOD至少比APCI低三倍。SRM检测提供的检测选择性通过无需色谱分离,将复杂混合物分析时间缩短至每个样品3分钟。该检测方法已成功应用于多种环境样品和细胞培养物中的醌定量分析。从低至2×107个细胞的样品中即可提取并定量足够量的呼吸醌。