Sullivan Sarah A, Streit Bennett R, Ferguson Ethan L, Jean Paul A, McNett Debra A, Llames Louis T, DuBois Jennifer L
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA.
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA; Department of Chemistry and Biochemistry, Montana State University, Bozeman, MT 59713, USA.
Anal Biochem. 2015 Jun 1;478:82-9. doi: 10.1016/j.ab.2015.03.004. Epub 2015 Mar 10.
Rapid, high-throughput, and quantitative evaluations of biological metabolites in complex milieu are increasingly required for biochemical, toxicological, pharmacological, and environmental analyses. They are also essential for the development, testing, and improvement of new commercial chemical products. We demonstrate the application of ultra-high performance liquid chromatography-mass spectrometry (uHPLC-MS), employing an electrospray ionization source and a high accuracy quadrupole time-of-flight mass analyzer, for the identification and quantification of a series of porphyrin derivatives in liver: a matrix of particular relevance in toxicological or pharmacological testing. Exact mass is used to identify and quantify the metabolites. Chromatography enhances sensitivity and alleviates potential saturation issues by fanning out the contents of a complex sample before their injection into the spectrometer, but is not strictly necessary for the analysis. Extraction and sample treatment procedures are evaluated and matrix effects discussed. Using this method, the known mechanism of action of a well-characterized porphyrinogenic agent was verified in liver extracts from treated rats. The method was also validated for use with bacterial cells. This exact-mass method uses workhorse instruments available in many laboratories, providing a highly flexible alternative to existing HPLC- and MS/MS-based approaches for the simultaneous analysis of multiple compounds in biological media.
在生物化学、毒理学、药理学及环境分析中,对复杂环境中的生物代谢物进行快速、高通量及定量评估的需求日益增加。这对于新商业化学产品的开发、测试及改进也至关重要。我们展示了超高效液相色谱-质谱联用(uHPLC-MS)的应用,该联用技术采用电喷雾电离源和高精度四极杆飞行时间质谱仪,用于鉴定和定量肝脏中一系列卟啉衍生物:肝脏是毒理学或药理学测试中特别相关的基质。精确质量数用于鉴定和定量代谢物。色谱法通过在将复杂样品注入光谱仪之前分散其成分来提高灵敏度并缓解潜在的饱和问题,但对于分析并非严格必需。对提取和样品处理程序进行了评估,并讨论了基质效应。使用该方法,在经处理大鼠的肝脏提取物中验证了一种特征明确的致卟啉剂的已知作用机制。该方法也已验证可用于细菌细胞。这种精确质量数方法使用许多实验室都有的常用仪器,为现有基于HPLC和MS/MS的方法提供了一种高度灵活的替代方案,用于同时分析生物介质中的多种化合物。