García-Sevillano M A, García-Barrera T, Navarro F, Montero-Lobato Z, Gómez-Ariza J L
Department of Chemistry and Materials Science, Faculty of Experimental Science, University of Huelva, Campus de El Carmen, 21007, Huelva, Spain.
Biometals. 2015 Apr;28(2):341-51. doi: 10.1007/s10534-015-9837-9. Epub 2015 Mar 10.
Mass spectrometry (MS)-based toxicometabolomics requires analytical approaches for obtaining unbiased metabolic profiles. The present work explores the general application of direct infusion MS using a high mass resolution analyzer (a hybrid systems triple quadrupole-time-of-flight) and a complementary gas chromatography-MS analysis to mitochondria extracts from mouse hepatic cells, emphasizing on mitochondria isolation from hepatic cells with a commercial kit, sample treatment after cell lysis, comprehensive metabolomic analysis and pattern recognition from metabolic profiles. Finally, the metabolomic platform was successfully checked on a case-study based on the exposure experiment of mice Mus musculus to inorganic arsenic during 12 days. Endogenous metabolites alterations were recognized by partial least squares-discriminant analysis. Subsequently, metabolites were identified by combining MS/MS analysis and metabolomics databases. This work reports for the first time the effects of As-exposure on hepatic mitochondria metabolic pathways based on MS, and reveals disturbances in Krebs cycle, β-oxidation pathway, amino acids degradation and perturbations in creatine levels. This non-target analysis provides extensive metabolic information from mitochondrial organelle, which could be applied to toxicology, pharmacology and clinical studies.
基于质谱(MS)的毒物代谢组学需要采用分析方法来获取无偏差的代谢谱。本研究探讨了使用高质量分辨率分析仪(混合系统三重四极杆-飞行时间)的直接进样质谱以及互补的气相色谱-质谱分析在小鼠肝细胞线粒体提取物中的一般应用,重点在于使用商业试剂盒从肝细胞中分离线粒体、细胞裂解后的样品处理、全面的代谢组学分析以及代谢谱的模式识别。最后,基于小鼠小家鼠暴露于无机砷12天的实验,在一个案例研究中成功检验了该代谢组学平台。通过偏最小二乘判别分析识别内源性代谢物的变化。随后,结合MS/MS分析和代谢组学数据库鉴定代谢物。本研究首次报道了基于质谱的砷暴露对肝脏线粒体代谢途径的影响,并揭示了三羧酸循环、β-氧化途径、氨基酸降解的紊乱以及肌酸水平的扰动。这种非靶向分析提供了来自线粒体细胞器的广泛代谢信息,可应用于毒理学、药理学和临床研究。