Plumb Robert S, Johnson Kelly A, Rainville Paul, Shockcor John P, Williams Rebecca, Granger Jennifer H, Wilson Ian D
Waters Corporation, 34 Maple Street, Milford, MA, USA.
Rapid Commun Mass Spectrom. 2006;20(19):2800-6. doi: 10.1002/rcm.2655.
Analysis of biological fluids using ultra-performance liquid chromatography/mass spectrometry (UPLC/MS) (metabonomics) can allow new insights to be gained into disease processes, with advances in chromatographic techniques enabling the detection of thousands of metabolites. In this work metabonomics has been used to investigate the metabolic processes involved in type II diabetes in the Zucker obese rat. Plasma was analyzed from three different strains, the Zucker (fa/fa) obese, Zucker lean and the lean/(fa) obese cross. Using UPLC/MS, ca. 10,000 ions were detected due to the narrow peak widths and excellent peak shapes achieved with this technology. Confidence in the chromatographic performance was demonstrated by the use of quality control standards. The positive and negative ion total ion chromatograms obtained from the three strains were readily distinguishable using multivariate statistical analysis. The greatest difference was observed between the Zucker lean and Zucker lean/(fa) rats compared to the Zucker (fa/fa) obese rats. Positive ions m/z 220 (4.36 min), 282(3.78 min), 359 (5.33 min) and 405 (7.77 min) were elevated in the plasma derived from Zucker lean rats whilst ions m/z 385 (6.80 min) and 646 (4.36 min) were at a lower concentration compared to the plasma from the Zucker (fa/fa) obese animals. Negative ions elevated in the Zucker lean rats included m/z 212 (2.30 min), 514 (2.85 min), 295 (4.39 min), 329 (3.11 min), 343 (2.86 min) and 512 (2.86 min) with ions m/z 538 (4.18 min), 568 (4.18 min), 568 (5.09 min) and 612 (4.30 min) being raised in the samples derived from Zucker (fa/fa) obese animals. The ion m/z 514 (3.85 min) was found to correspond to taurocholate, providing further support for an involvement of taurine metabolism in diabetes.
使用超高效液相色谱/质谱联用技术(UPLC/MS)(代谢组学)分析生物流体,能够使人们对疾病进程有新的认识,色谱技术的进步使得能够检测数千种代谢物。在这项工作中,代谢组学被用于研究Zucker肥胖大鼠中II型糖尿病所涉及的代谢过程。分析了来自三种不同品系的血浆,即Zucker(fa/fa)肥胖大鼠、Zucker瘦大鼠以及瘦/(fa)肥胖杂交大鼠。使用UPLC/MS,由于该技术实现了窄峰宽和优异的峰形,检测到了约10,000个离子。通过使用质量控制标准证明了对色谱性能的信心。使用多变量统计分析,从这三个品系获得的正离子和负离子总离子色谱图很容易区分。与Zucker(fa/fa)肥胖大鼠相比,在Zucker瘦大鼠和Zucker瘦/(fa)大鼠之间观察到最大差异。在Zucker瘦大鼠来源的血浆中,正离子m/z 220(4.36分钟)、282(3.78分钟)、359(5.33分钟)和405(7.77分钟)升高,而与Zucker(fa/fa)肥胖动物的血浆相比,离子m/z 385(6.80分钟)和646(4.36分钟)浓度较低。在Zucker瘦大鼠中升高的负离子包括m/z 212(2.30分钟)、514(2.85分钟)、295(4.39分钟)、329(3.11分钟)、343(2.86分钟)和512(2.86分钟),而在Zucker(fa/fa)肥胖动物来源的样品中,离子m/z 538(4.18分钟)、568(4.18分钟)、568(5.09分钟)和612(4.30分钟)升高。发现离子m/z 514(3.85分钟)对应于牛磺胆酸盐,这为牛磺酸代谢参与糖尿病提供了进一步的支持。