3.8 Review

Bacterial Metabolomics: Sample Preparation Methods

Journal

BIOCHEMISTRY RESEARCH INTERNATIONAL
Volume 2022, Issue -, Pages -

Publisher

HINDAWI LTD
DOI: 10.1155/2022/9186536

Keywords

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Funding

  1. Ministry of Education Malaysia under the Fundamental Research Grant Scheme (FRGS) [FRGS/1/2019/STG03/UIAM/03/1, FRGS19-119-0728]

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Metabolomics is a comprehensive analysis of metabolites in biological systems, providing insights into cellular metabolic states. Bacterial metabolomics has gained significant interest, but sample and metabolite preparation methods remain a bottleneck. This review summarizes the current development of sample preparation methods in bacterial metabolomics and discusses the advantages and limitations for future improvement.
Metabolomics is a comprehensive analysis of metabolites existing in biological systems. As one of the important omics tools, the approach has been widely employed in various fields in helping to better understand the complex cellular metabolic states and changes. Bacterial metabolomics has gained a significant interest as bacteria serve to provide a better subject or model at systems level. The approach in metabolomics is categorized into untargeted and targeted which serves different paradigms of interest. Nevertheless, the bottleneck in metabolomics has been the sample or metabolite preparation method. A custom-made method and design for a particular species or strain of bacteria might be necessary as most studies generally refer to other bacteria or even yeast and fungi that may lead to unreliable analysis. The paramount aspect of metabolomics design comprises sample harvesting, quenching, and metabolite extraction procedures. Depending on the type of samples and research objective, each step must be at optimal conditions which are significantly important in determining the final output. To date, there are no standardized nor single designated protocols that have been established for a specific bacteria strain for untargeted and targeted approaches. In this paper, the existing and current developments of sample preparation methods of bacterial metabolomics used in both approaches are reviewed. The review also highlights previous literature of optimized conditions used to propose the most ideal methods for metabolite preparation, particularly for bacterial cells. Advantages and limitations of methods are discussed for future improvement of bacterial metabolomics.

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