Feith André, Teleki Attila, Graf Michaela, Favilli Lorenzo, Takors Ralf
Institute of Biochemical Engineering, University of Stuttgart, Allmandring 31, 70569 Stuttgart, Germany.
Metabolites. 2019 Apr 2;9(4):63. doi: 10.3390/metabo9040063.
Dynamic C-tracer-based flux analyses of in vivo reaction networks still require a continuous development of advanced quantification methods applying state-of-the-art mass spectrometry platforms. Utilizing alkaline HILIC chromatography, we adapt strategies for a systematic quantification study in non- and C-labeled multicomponent endogenous extracts by LC-QTOF high resolution (HRMS) and LC-QQQ tandem mass spectrometry (MS/MS). Without prior derivatization, a representative cross-section of 17 central carbon and anabolic key intermediates were analyzed with high selectivity and sensitivity under optimized ESI-MS settings. In column detection limits for the absolute quantification range were between 6.8-304.7 (QQQ) and 28.7-881.5 fmol (QTOF) with comparable linearities (3-5 orders of magnitude) and enhanced precision using QQQ-MRM detection. Tailor-made preparations of uniformly (U)C-labeled cultivation extracts for isotope dilution mass spectrometry enabled the accurate quantification in complex sample matrices and extended linearities without effect on method parameters. Furthermore, evaluation of metabolite-specific -to- ratios (ISR) in non-labeled extracts exhibited sufficient methodical spectral accuracies with mean deviations of 3.89 ± 3.54% (QTOF) and 4.01 ± 3.01% (QQQ). Based on the excellent HILIC performance, conformity analysis of time-resolved isotopic enrichments in C-tracer experiments revealed sufficient spectral accuracy for QQQ-SIM detection. However, only QTOF-HRMS ensures determination of the full isotopologue space in complex matrices without mass interferences.
基于动态C示踪剂的体内反应网络通量分析仍需要不断开发先进的定量方法,以应用最先进的质谱平台。利用碱性亲水相互作用液相色谱,我们采用策略,通过液相色谱-四极杆飞行时间高分辨率质谱(HRMS)和液相色谱-三重四极杆串联质谱(MS/MS),对非标记和C标记的多组分内源性提取物进行系统的定量研究。在无需预先衍生化的情况下,在优化的电喷雾电离质谱(ESI-MS)设置下,以高选择性和灵敏度分析了17种中心碳和合成代谢关键中间体的代表性横截面。柱上绝对定量范围的检测限在6.8-304.7(三重四极杆)和28.7-881.5飞摩尔(四极杆飞行时间)之间,具有可比的线性度(3-5个数量级),并使用三重四极杆多反应监测(MRM)检测提高了精密度。为同位素稀释质谱量身定制的均匀(U)C标记培养提取物制剂,能够在复杂样品基质中进行准确定量,并扩展线性度,而不会影响方法参数。此外,对非标记提取物中代谢物特异性的同位素比(ISR)进行评估,显示出足够的方法光谱准确度,平均偏差为3.89±3.54%(四极杆飞行时间)和4.01±3.01%(三重四极杆)。基于出色的亲水相互作用液相色谱性能,C示踪剂实验中时间分辨同位素富集的一致性分析显示,三重四极杆选择离子监测(SIM)检测具有足够的光谱准确度。然而,只有四极杆飞行时间高分辨率质谱能够在复杂基质中确定完整的同位素异构体空间,而不会产生质量干扰。