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Reducing Time and Increasing Sensitivity in Sample Preparation for Adherent Mammalian Cell Metabolomics

机译:减少时间和提高敏感性的哺乳动物细胞代谢组学样品制备中的敏感性

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A simple, fast, and reproducible sample preparation procedure was developed for relative quantification of metabolites in adherent mammalian cells using the clonal beta-cell line INS-1 as a model sample. The method was developed by evaluating the effect of different sample preparation procedures on high performance liquid chromatography-mass spectrometry quantification of 27 metabolites involved in glycolysis and the tricarboxylic acid cycle on a directed basis as well as for all detectable chromatographic features on an undirected basis. We demonstrate that a rapid water rinse step prior to quenching of metabolism reduces components that suppress electrospray ionization thereby increasing signal for 26 of 27 targeted metabolites and increasing total number of detected features from 237 to 452 with no detectable change of metabolite content. A novel quenching technique is employed which involves addition of liquid nitrogen directly to the culture dish and allows for samples to be stored at -80 deg C for at least 7 d before extraction. Separation of quenching and extraction steps provides the benefit of increased experimental convenience and sample stability while maintaining metabolite content similar to techniques that employ simultaneous quenching and extraction with cold organic solvent. The extraction solvent 9:1 methanol: chloroform was found to provide superior performance over acetonitrile, ethanol, and methanol with respect to metabolite recovery and extract stability. Maximal recovery was achieved using a single rapid (approx1 min) extraction step. The utility of this rapid preparation method (approx5 min) was demonstrated through precise metabolite measurements (11percent average relative standard deviation without internal standards) associated with step changes in glucose concentration that evoke insulin secretion in the clonal beta-cell line INS-1.
机译:使用克隆的β-细胞系INS-1作为模型样品,开发了一种简单,快速且可重现的样品制备程序,用于相对定量哺乳动物粘附细胞中的代谢物。该方法是通过评估不同样品制备程序对高效液相色谱-质谱定量分析涉及糖酵解和三羧酸循环的27种代谢产物的影响以及有针对性地针对所有可检测色谱特征的影响而开发的。我们证明了在代谢猝灭之前的快速水冲洗步骤减少了抑制电喷雾电离的成分,从而增加了27种目标代谢物中的26种信号,并且将检测到的特征总数从237增加到452,而没有代谢物含量的变化。采用了一种新颖的淬灭技术,该技术涉及将液氮直接添加到培养皿中,并允许样品在提取前在-80摄氏度下保存至少7 d。淬灭和萃取步骤的分离提供了增加实验便利性和样品稳定性的好处,同时保持了代谢物的含量,类似于采用冷有机溶剂同时进行淬灭和萃取的技术。在代谢物回收率和提取物稳定性方面,发现提取溶剂9:1甲醇:氯仿的性能优于乙腈,乙醇和甲醇。使用单个快速(约1分钟)提取步骤即可实现最大回收率。通过精确的代谢物测量(无内标物,平均相对标准偏差为11%)与引起克隆β细胞系INS-1胰岛素分泌的葡萄糖浓度逐步变化相关联,证明了这种快速制备方法的实用性(约5分钟)。

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