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Fast and ergonomic extraction of adherent mammalian cells for NMR-based metabolomics studies

机译:基于NMR的代谢组研究的粘附哺乳动物细胞的快速和人体工程学提取

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Cellular metabolomics has become key to elucidate mechanistic aspects in various fields such as cancerology or pharmacology, and is rapidly becoming a standard phenotyping tool accessible to the broad biological community. Acquisition of reliable spectroscopic datasets, such as nuclear magnetic resonance (NMR) spectra, to characterize biological systems depends on the elaboration of robust methods for cellular metabolites extraction. Previous studies have addressed many issues raised by these protocols, however with little pondering on ergonomic and practical aspects of the methods that impact their scalability, reproducibility and hence their suitability to high-throughput studies or their use by non-metabolomics experts. Here, we optimize a fast and ergonomic protocol for extraction of metabolites from adherent mammalian cells for NMR metabolomics studies. The proposed extraction protocol, including cell washing, metabolism quenching and actual extraction of intracellular metabolites, was first optimized on HeLa cells. Efficiency of the protocol, in its globality and for the different individual steps, was assessed by NMR quantification of 27 metabolites from cellular extracts. We show that a single PBS wash provides a seemly compromise between contamination from growth medium and leakage of intracellular metabolites. In HeLa cells, extraction using pure methanol, without cell scraping, recovered a higher amount of intracellular metabolites than the reference methanol/water/chloroform method with cell scraping, with yields varying across metabolite classes. Optimized and reference protocols were further tested on eight cell lines of miscellaneous nature, and inter-operator reproducibility was demonstrated. Our results stress the need for tailored extraction protocols and show that fast protocols minimizing time-consuming steps, without compromising extraction yields, are suitable for high-throughput metabolomics studies.
机译:细胞代谢物已成为阐明诸如癌症或药理学的各个领域的机械方面的关键,并且正在迅速成为广泛的生物群体可访问的标准表型工具。获取可靠的光谱数据集,例如核磁共振(NMR)光谱,以表征生物系统取决于细胞代谢物提取的鲁棒方法。以前的研究已经解决了这些议定书提出的许多问题,然而,对影响其可扩展性,再现性的方法的人体工程学和实践方面几乎没有思考,从而适用于非代谢专家对高通量研究或其使用的适用性。在这里,我们优化了一种快速和符合人体工程学的方案,用于从粘附的哺乳动物细胞中提取代谢物进行NMR代谢组科研究。提出的提取方案,包括细胞洗涤,代谢猝灭和细胞内代谢物的实际提取,首先在Hela细胞上进行优化。通过来自细胞提取物的27个代谢物的NMR定量评估了该方案的效率,在其全球性和不同的单个步骤中评估了27个代谢物的评估。我们表明,单个PBS洗涤在从生长培养基和细胞内代谢物的泄漏中提供了似乎妥协。在HeLa细胞中,使用纯甲醇的萃取,没有细胞刮擦,比具有细胞刮擦的参考甲醇/水/氯仿方法回收了更高量的细胞内代谢物,产率在代谢物类上变化。优化和参考方案进一步测试了八种细胞系的杂项性质,并证明了操作型再现性。我们的结果强调需要定制的提取方案,并表明快速方案最小化耗时步骤,而不会影响提取产量,适用于高通量代谢物研究。

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