Modern Research Center for Traditional Chinese Medicine, the Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Shanxi University, No. 92, Wucheng Road, Taiyuan, Shanxi 030006, People's Republic of China.
J Proteome Res. 2021 Sep 3;20(9):4487-4494. doi: 10.1021/acs.jproteome.1c00450. Epub 2021 Aug 26.
With the increasing knowledge about the important roles of gut microbiota on the biological system, a systematic strategy to profile the fecal metabolome is urgently needed. Thus, an unbiased, efficient, and reproducible fecal metabolite extraction protocol needs to be established; however, the effect of biphasic extraction methods for the fecal samples remains unclear. In this study, five different methods were assessed in the extraction of polar and non-polar metabolites for the liquid chromatography-mass spectrometry (LC-MS)-based mouse fecal metabolomic study. First, the detection coverage of two extraction systems, the Bligh and Dyer extraction method (M1, chloroform/methanol/water, 2/2/1.8) and Matyash method (M2, methyl -butyl ether (MTBE)/methanol/water, 10/3/2.5), was compared; then, MTBE/methanol/water system with different solvent ratios (M3, 2.6/2.0/2.4; M4, 4.5/1/2.5; and M5, 3/2.5/2.5) were further evaluated. The results showed that M2 showed higher detection coverage than M1. For the MTBE/methanol/water system with different solvent ratios, M3 showed the largest detection coverage based on peak numbers and numbers of putatively annotated metabolites, while M4 presented the least overlap between two phases, higher peak intensities of metabolites, and superior reproducibility. Based on the above evidence, M4 was recommended for the biphasic extraction of fecal metabolites in the LC-MS-based mouse fecal metabolomic study.
随着人们对肠道微生物群在生物系统中重要作用的认识不断增加,迫切需要系统地分析粪便代谢组。因此,需要建立一种无偏、高效和可重复的粪便代谢物提取方案;然而,双相提取方法对粪便样本的效果仍不清楚。在这项研究中,评估了五种不同的方法用于提取基于液相色谱-质谱(LC-MS)的小鼠粪便代谢组学研究中的极性和非极性代谢物。首先,比较了两种提取系统,即 Bligh 和 Dyer 提取法(M1,氯仿/甲醇/水,2/2/1.8)和 Matyash 法(M2,甲基-丁基醚(MTBE)/甲醇/水,10/3/2.5)的检测覆盖度;然后,进一步评估了 MTBE/甲醇/水系统不同溶剂比(M3,2.6/2.0/2.4;M4,4.5/1/2.5;和 M5,3/2.5/2.5)。结果表明,M2 的检测覆盖度高于 M1。对于不同溶剂比的 MTBE/甲醇/水系统,M3 基于峰数和推定注释代谢物的数量显示出最大的检测覆盖度,而 M4 两相间的重叠最小,代谢物的峰强度更高,重现性更好。基于上述证据,推荐 M4 用于基于 LC-MS 的小鼠粪便代谢组学中粪便代谢物的两相提取。