Sort   by:  
 Page size 

Quantitative NMR metabolomics is a powerful tool to have access to valuable information on metabolism. Unfortunately, the quantitative analysis of metabolic samples is often hampered by peak overlap. Two-dimensional (2D) spectroscopy offers a promising alternative and quantitative results can be ...

2015-11-11 | MTBLS133 | MetaboLights

Quantitative NMR metabolomics is a powerful tool to have access to valuable information on metabolism. Unfortunately, the quantitative analysis of metabolic samples is often hampered by peak overlap. Two-dimensional (2D) spectroscopy offers a promising alternative and quantitative results can be ...

2015-11-11 | MTBLS134 | MetaboLights

Quantitative NMR metabolomics is a powerful tool to have access to valuable information on metabolism. Unfortunately, the quantitative analysis of metabolic samples is often hampered by peak overlap. Two-dimensional (2D) spectroscopy offers a promising alternative and quantitative results can be ...

2015-01-28 | MTBLS131 | MetaboLights

Quantitative NMR metabolomics is a powerful tool to have access to valuable information on metabolism. Unfortunately, the quantitative analysis of metabolic samples is often hampered by peak overlap. Two-dimensional (2D) spectroscopy offers a promising alternative and quantitative results can be ...

2015-11-11 | MTBLS132 | MetaboLights

Macrophages are key drivers of inflammatory and fibrotic diseases and their activation is shaped by interactions in their tissue microenvironment. However, dissecting the processes that drive immunopathology has proved challenging as traditional 2D culture methods fail to capture the complex mole...

2026-06-08 | MTBLS12917 | MetaboLights
Background: The aim of this study is to determine the feasibility of using Nuclear Magnetic Resonance (NMR) tracer studies (13C-enriched glucose) to detect ex vivo de novo metabolism in the perfusion fluid and cortical tissue of porcine kidneys during hypothermic machine perfusion (HMP). Methods: Po...
2017-10-16 | MTBLS367 | MetaboLights
Not available
ORGANISM(S): Caenorhabditis elegans 
Single-cell level measurements are necessary to characterize the intrinsic biological variability in a population of cells. In a study of the metabolic response of a clonal Saccharomyces cerevisiae population challenged by the glycolytic inhibitor 2-deoxy-D-glucose (2-DG), this variability is shown ...
2013-05-22 | MTBLS29 | MetaboLights
Root rot has severely affected the yield and quality of Polygonatum kingianum, and Fusarium oxysporum has been identified as the primary causal agent. To explore the virulence mechanisms of this pathogen, we performed a functional characterization of FoHsf1, a gene encoding a heat shock transcriptio...
2026-04-11 | MTBLS14221 | MetaboLights
Sort   by:  
 Page size