Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties of metabolism. Here we extend high-resolution-magic angle spinning (HR-MAS) to enable continuous in vivo monitoring of metabolism by NMR (CIVM-NMR) and provide analysis tools for these data. First, we reproduced a result in human chronic lymphoid leukemia cells by using isotope-edited CIVM-NMR to rapidly and unambiguously demonstrate unidirectional flux in branched-chain amino acid metabolism. We then collected untargeted CIVM-NMR datasets for Neurospora crassa, a classic multicellular model organism, and uncovered dynamics between central carbon metabolism, amino acid metabolism, energy storage molecules, and lipid and cell wall precursors. V...
Current metabolomics approaches utilize cellular metabolite extracts, are destructive, and require h...
During the past few decades, the direct analysis of metabolic intermediates in biological samples ha...
We present a quantitative study of the metabolic activity of a single spheroid culture of human canc...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
System biology relies on holistic biomolecule measurements, and untangling biochemical networks requ...
Current metabolomics approaches utilize cellular metabolite extracts, are destructive, and require h...
During the past few decades, the direct analysis of metabolic intermediates in biological samples ha...
We present a quantitative study of the metabolic activity of a single spheroid culture of human canc...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
Dense time-series metabolomics data are essential for unraveling the underlying dynamic properties o...
System biology relies on holistic biomolecule measurements, and untangling biochemical networks requ...
Current metabolomics approaches utilize cellular metabolite extracts, are destructive, and require h...
During the past few decades, the direct analysis of metabolic intermediates in biological samples ha...
We present a quantitative study of the metabolic activity of a single spheroid culture of human canc...