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基于 GC-MS 的 与 单物种和双物种生物膜的代谢组学研究。

GC-MS-Based Metabolomics Study of Single- and Dual-Species Biofilms of and .

机构信息

Department of Biology, University of Naples 'Federico II', via Cinthia, 80126 Naples, Italy.

Department of Chemical Sciences, University of Naples 'Federico II', via Cinthia, 80126 Naples, Italy.

出版信息

Int J Mol Sci. 2021 Mar 28;22(7):3496. doi: 10.3390/ijms22073496.

Abstract

and frequently co-exist within the human host as a complex biofilm community. These pathogens are of interest because their association is also related to significantly increased morbidity and mortality in hospitalized patients. With the aim of highlighting metabolic shifts occurring in the dual-species biofilm, an untargeted GC-MS-based metabolomics approach was applied to single and mixed biofilms of and . Metabolomic results showed that among the extracellular metabolites identified, approximately 40 compounds had significantly changed relative abundance, mainly involving central carbon, amino acid, vitamin, and secondary metabolisms, such as serine, leucine, arabitol, phosphate, vitamin B6, -(Phe-Pro), trehalose, and nicotinic acid. The results were related to the strict interactions between the two species and the different microbial composition in the early and mature biofilms.

摘要

并且经常作为复杂的生物膜群落共同存在于人类宿主中。这些病原体很有研究价值,因为它们的存在也与住院患者发病率和死亡率的显著增加有关。为了强调双物种生物膜中发生的代谢转变,我们采用了一种非靶向的 GC-MS 代谢组学方法来研究 和 的单种和混合生物膜。代谢组学结果表明,在所鉴定的细胞外代谢物中,大约有 40 种化合物的相对丰度发生了显著变化,主要涉及中心碳、氨基酸、维生素和次级代谢物,如丝氨酸、亮氨酸、阿糖醇、磷酸盐、维生素 B6、-(苯丙氨酸-脯氨酸)、海藻糖和烟酸。这些结果与两种物种之间的严格相互作用以及早期和成熟生物膜中不同的微生物组成有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/751d/8037927/acccf3489c70/ijms-22-03496-g002.jpg

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