Pinu Farhana R, Villas-Boas Silas G, Aggio Raphael
The New Zealand Institute for Plant & Food Research Limited, Private Bag 92169, Auckland 1142, New Zealand.
School of Biological Sciences, University of Auckland, Private Bag 92019, Auckland 1010, New Zealand.
Metabolites. 2017 Oct 23;7(4):53. doi: 10.3390/metabo7040053.
Sample preparation is one of the most important steps in metabolome analysis. The challenges of determining microbial metabolome have been well discussed within the research community and many improvements have already been achieved in last decade. The analysis of intracellular metabolites is particularly challenging. Environmental perturbations may considerably affect microbial metabolism, which results in intracellular metabolites being rapidly degraded or metabolized by enzymatic reactions. Therefore, quenching or the complete stop of cell metabolism is a pre-requisite for accurate intracellular metabolite analysis. After quenching, metabolites need to be extracted from the intracellular compartment. The choice of the most suitable metabolite extraction method/s is another crucial step. The literature indicates that specific classes of metabolites are better extracted by different extraction protocols. In this review, we discuss the technical aspects and advancements of quenching and extraction of intracellular metabolite analysis from microbial cells.
样品制备是代谢组分析中最重要的步骤之一。确定微生物代谢组面临的挑战在研究界已得到充分讨论,并且在过去十年中已经取得了许多进展。细胞内代谢物的分析尤其具有挑战性。环境扰动可能会极大地影响微生物代谢,这导致细胞内代谢物通过酶促反应迅速降解或代谢。因此,淬灭或完全停止细胞代谢是准确进行细胞内代谢物分析的先决条件。淬灭后,需要从细胞内区室中提取代谢物。选择最合适的代谢物提取方法是另一个关键步骤。文献表明,不同的提取方案能更好地提取特定类别的代谢物。在本综述中,我们讨论了从微生物细胞中淬灭和提取细胞内代谢物分析的技术方面和进展。