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3D 细胞培养系统中样品制备对细胞内代谢物测量的影响。

Impact of sample preparation upon intracellular metabolite measurements in 3D cell culture systems.

机构信息

PMI R&D, Philip Morris Products S.A., Quai Jeanrenaud 5, 2000, Neuchâtel, Switzerland.

Unit of Toxicology, CURML, Lausanne-Geneva, Switzerland.

出版信息

Metabolomics. 2019 Jun 12;15(6):92. doi: 10.1007/s11306-019-1551-0.

Abstract

INTRODUCTION

Interest in cell culture metabolomics has increased greatly in recent years because of its many potential applications and advantages (e.g., in toxicology). The first critical step for exploring the cellular metabolome is sample preparation. For metabolomics studies, an ideal sample preparation would extract a maximum number of metabolites and would enable reproducible, accurate analysis of a large number of samples and replicates. In addition, it would provide consistent results across several studies over a relatively long time frame.

OBJECTIVES

This study was conducted to evaluate the impact of sample preparation strategies on monitoring intracellular metabolite responses, highlighting the potential critical step(s) in order to finally improve the quality of metabolomics studies.

METHODS

The sample preparation strategies were evaluated by calculating the sample preparation effect, matrix factor, and process efficiency (PE) for 16 tobacco exposition-related metabolites, including nicotine, nicotine-derived nitrosamine ketone, their major metabolites, and glutathione, using isotopically-labelled internal standards. Samples were analyzed by liquid chromatography (LC) coupled to high-resolution mass spectrometry (HRMS).

RESULTS

A sample drying step increased losses or variability for some selected metabolites. By avoiding evaporation, good sample preparation recovery was obtained for these compounds. For some metabolites, the cell or culture type impacted PE and matrix factor.

CONCLUSION

In our sample preparation protocol, the drying-reconstitution step was identified as the main cause of metabolite losses or increased data variability during metabolomics analysis by LC-HRMS. Furthermore, PE was affected by the type of matrix. Isotopologue internal standards fully compensate losses or enhancements.

摘要

简介

近年来,细胞培养代谢组学的兴趣大大增加,因为它有许多潜在的应用和优势(例如,在毒理学方面)。探索细胞代谢组学的第一个关键步骤是样品制备。对于代谢组学研究,理想的样品制备方法应该提取尽可能多的代谢物,并能够对大量的样品和重复样本进行可重复、准确的分析。此外,它还应该在相对较长的时间内提供跨多个研究的一致结果。

目的

本研究旨在评估样品制备策略对监测细胞内代谢物反应的影响,强调潜在的关键步骤,最终提高代谢组学研究的质量。

方法

通过计算 16 种与烟草暴露相关的代谢物(包括尼古丁、尼古丁衍生的亚硝胺酮及其主要代谢物,以及谷胱甘肽)的样品制备效果、基质因子和过程效率(PE),使用同位素标记的内标来评估样品制备策略。样品通过液相色谱(LC)与高分辨率质谱(HRMS)联用进行分析。

结果

干燥步骤增加了一些选定代谢物的损失或变异性。通过避免蒸发,可以获得这些化合物良好的样品制备回收率。对于一些代谢物,细胞或培养物类型影响 PE 和基质因子。

结论

在我们的样品制备方案中,干燥-再配制步骤被确定为 LC-HRMS 分析过程中代谢物损失或数据变异性增加的主要原因。此外,PE 受基质类型的影响。同位素标记的内标完全补偿了损失或增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bd9/6561993/458042f35ace/11306_2019_1551_Fig1_HTML.jpg

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