Department of Clinical Sciences, Lund University Diabetes Centre, Malmö University Hospital, Sweden.
Anal Biochem. 2010 Sep 1;404(1):30-9. doi: 10.1016/j.ab.2010.04.013. Epub 2010 Apr 22.
In this investigation, a gas chromatography/mass spectrometry (GC/MS)-based metabolomic protocol for adherent cell cultures was developed using statistical design of experiments. Cell disruption, metabolite extraction, and the GC/MS settings were optimized aiming at a gentle, unbiased, sensitive, and high-throughput metabolomic protocol. Due to the heterogeneity of the metabolome and the inherent selectivity of all analytical techniques, development of unbiased protocols is highly complex. Changing one parameter of the protocol may change the response of many groups of metabolites. In this investigation, statistical design of experiments and multivariate analysis also allowed such interaction effects to be taken into account. The protocol was validated with respect to linear range, precision, and limit of detection in a clonal rat insulinoma cell line (INS-1 832/13). The protocol allowed high-throughput profiling of metabolites covering the major metabolic pathways. The majority of metabolites displayed a linear range from a single well in a 96-well plate up to a 10 cm culture dish. The method allowed a total of 47 analyses to be performed in 24h.
在这项研究中,采用实验设计统计学方法开发了一种适用于贴壁细胞培养物的基于气相色谱/质谱(GC/MS)的代谢组学方法。旨在开发一种温和、无偏倚、灵敏且高通量的代谢组学方法,对细胞破碎、代谢物提取和 GC/MS 条件进行了优化。由于代谢组的异质性和所有分析技术的固有选择性,开发无偏倚的方案非常复杂。改变方案的一个参数可能会改变许多代谢物组的响应。在这项研究中,实验设计统计学和多元分析也允许考虑这种相互作用效应。该方案在克隆大鼠胰岛素瘤细胞系(INS-1 832/13)中进行了线性范围、精密度和检测限的验证。该方案允许对涵盖主要代谢途径的代谢物进行高通量分析。大多数代谢物在 96 孔板的单个孔到 10cm 培养皿的范围内显示出线性范围。该方法允许在 24 小时内总共进行 47 次分析。