Literature DB >> 22800371

Analysis of bacterial biofilms using NMR-based metabolomics.

Bo Zhang1, Robert Powers.   

Abstract

Infectious diseases can be difficult to cure, especially if the pathogen forms a biofilm. After decades of extensive research into the morphology, physiology and genomics of biofilm formation, attention has recently been directed toward the analysis of the cellular metabolome in order to understand the transformation of a planktonic cell to a biofilm. Metabolomics can play an invaluable role in enhancing our understanding of the underlying biological processes related to the structure, formation and antibiotic resistance of biofilms. A systematic view of metabolic pathways or processes responsible for regulating this 'social structure' of microorganisms may provide critical insights into biofilm-related drug resistance and lead to novel treatments. This review will discuss the development of NMR-based metabolomics as a technology to study medically relevant biofilms. Recent advancements from case studies reviewed in this manuscript have shown the potential of metabolomics to shed light on numerous biological problems related to biofilms.

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Year:  2012        PMID: 22800371      PMCID: PMC3564560          DOI: 10.4155/fmc.12.59

Source DB:  PubMed          Journal:  Future Med Chem        ISSN: 1756-8919            Impact factor:   3.808


  240 in total

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8.  A global metabolic shift is linked to Salmonella multicellular development.

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9.  Polymerization of cardanol using soybean peroxidase and its potential application as anti-biofilm coating material.

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  28 in total

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2.  Rapid separation and quantitation of curcuminoids combining pseudo two-dimensional liquid flash chromatography and NMR spectroscopy.

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4.  Effect of Biochar on Microbial Growth: A Metabolomics and Bacteriological Investigation in E. coli.

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5.  Multivariate Analysis in Metabolomics.

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6.  NMR Metabolomics Analysis of Parkinson's Disease.

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Review 7.  Universal quantitative NMR analysis of complex natural samples.

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8.  Simultaneous Phase and Scatter Correction for NMR Datasets.

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9.  Bottom-up and top-down solid-state NMR approaches for bacterial biofilm matrix composition.

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