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HMR methods for in-situ biofilm metabolism studies: spatial and temporal resolved measurements

机译:用于原位生物膜代谢研究的HMR方法:时空分辨测量

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摘要

We are developing novel nuclear magnetic resonance (NMR) microscopy, spectroscopy and combined NMR/optical techniques for the study of biofilms under known, controlled growth conditions. Objectives include: time and depth-resolved metabolite concentrations with isotropic spatial resolution on the order of 10 microns, metabolic pathways and flux rates, mass transport and ultimately their correlation with gene expression by optical microscopy in biofilms. We describe the implementation of ex-situ grown biofilms to improve growth environment control and NMR analysis. In-situ NMR depth resolved metabolite profiling techniques are introduced and demonstrated for a Shewanella oneidensis strain MR-1 biofilm. Finally, initial combined confocal fluorescence and magnetic resonance images are shown for a GFP-labeled Shewanella biofilm. These methods are equally applicable to other biofilm systems of interest; thus they may provide a significant contribution toward the understanding of adherent cell metabolism.
机译:我们正在开发新颖的核磁共振(NMR)显微镜,光谱学和NMR /光学组合技术,用于在已知受控生长条件下研究生物膜。目标包括:时间和深度分解的代谢物浓度,各向同性的空间分辨率约为10微米,代谢途径和通量率,质量传递,以及最终通过光学显微镜在生物膜中与基因表达相关。我们描述了异地生长的生物膜的实施,以改善生长环境的控制和NMR分析。介绍了原核NMR深度分解代谢物谱分析技术,并证明了该酶用于Shewanella oneidensis菌株MR-1生物膜。最后,显示了GFP标记的希瓦氏菌生物膜的初始共聚焦荧光和磁共振图像。这些方法同样适用于其他感兴趣的生物膜系统。因此,它们可能对理解贴壁细胞代谢起重要作用。

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