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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >LC-MS metabolic profiling of Arabidopsis thaliana plant leaves and cell cultures: Optimization of pre-LC-MS procedure parameters
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LC-MS metabolic profiling of Arabidopsis thaliana plant leaves and cell cultures: Optimization of pre-LC-MS procedure parameters

机译:拟南芥植物叶片和细胞培养物的LC-MS代谢谱分析:LC-MS制备前工艺参数的优化

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This study treats the optimization of methods for homogenizing Arabidopsis thaliana plant leaves as well as cell cultures, and extracting their metabolites for metabolomics analysis by conventional liquid chromatography electrospray ionization mass spectrometry (LC-ESI/MS). Absolute recovery, process efficiency and procedure repeatability have been compared between different pre-LC-MS homogenization/extraction procedures through the use of samples fortified before extraction with a range of representative metabolites. Hereby, the magnitude of the matrix effect observed in the ensuing LC-MS based metabolomics analysis was evaluated. Based on relative recovery and repeatability of key metabolites, comprehensiveness of extraction (number of m/z-retention time pairs) and clean-up potential of the approach (minimum matrix effects), the most appropriate sample pre-treatment was adopted. It combines liquid nitrogen homogenization for plant leaves with thermomixer based extraction using MeOH/H2O 80/20. As such, an efficient and highly reproducible LC-MS plant metabolomics set-up is achieved, as illustrated by the obtained results for both LC-MS (8.88% +/- 5.16 versus 7.05% +/- 4.45) and technical variability (12.53% +/- 11.21 versus 9.31% +/- 6.65) data in a comparative investigation of A. thaliana plant leaves and cell cultures, respectively. (C) 2008 Elsevier B.V. All rights reserved.
机译:本研究对优化拟南芥植物叶片和细胞培养物的方法进行优化,并提取其代谢物以通过常规液相色谱电喷雾电离质谱(LC-ESI / MS)进行代谢组学分析。通过在使用各种代表性代谢物提取前强化的样品之间的比较,比较了不同LC-MS之前的均质化/提取过程之间的绝对回收率,过程效率和过程可重复性。因此,评估了在随后的基于LC-MS的代谢组学分析中观察到的基质效应的大小。根据关键代谢物的相对回收率和可重复性,提取的全面性(m / z保留时间对的数量)和该方法的净化潜力(最小基质效应),采用了最合适的样品预处理方法。它结合了用于植物叶片的液氮均质化和使用MeOH / H2O 80/20的基于热混合器的萃取。这样,就实现了高效且可重复性高的LC-MS植物代谢组学设置,如LC-MS(8.88%+/- 5.16对7.05%+/- 4.45)和技术可变性(12.53)获得的结果所示分别在拟南芥植物叶片和细胞培养物中进行的比较研究中,获得了+/- 11.21%与9.31%+/- 6.65%的数据。 (C)2008 Elsevier B.V.保留所有权利。

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