1H NMR metabolomics identification of markers of hypoxia-induced metabolic shifts in a breast cancer model system
1H NMR metabolomics identification of markers of hypoxia-induced metabolic shifts in a breast cancer model system
Abstract Hypoxia can promote invasive behavior in cancer cells and alters the response to therapeutic intervention as a result of changes in the expression many genes, including genes involved in intermediary metabolism. Although metabolomics technologies are capable of simultaneously measuring a wide range of metabolites in an untargeted manner, these methods have been relatively under utilized in the study of cancer cell responses to hypoxia. Thus, 1H NMR metabolomics was...
Biochemical disorders induced by cytotoxic marine natural products in breast cancer c
Biochemical disorders induced by cytotoxic marine natural products in breast cancer cells as revealed by proton NMR spectroscopy-based metabolomics.
Related Articles Biochemical disorders induced by cytotoxic marine natural products in breast cancer cells as revealed by proton NMR spectroscopy-based metabolomics.
Biochem Pharmacol. 2010 Oct 15;80(8):1170-9
Authors: Bayet-Robert M, Lim S, Barthomeuf C, Morvan D
Marine plants and animals are sources of a huge number of pharmacologically active compounds, some of which exhibit antineoplastic...
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[NMR paper] Kinetics of choline transport and phosphorylation in human breast cancer cells; NMR a
Kinetics of choline transport and phosphorylation in human breast cancer cells; NMR application of the zero trans method.
Related Articles Kinetics of choline transport and phosphorylation in human breast cancer cells; NMR application of the zero trans method.
Anticancer Res. 1996 May-Jun;16(3B):1375-80
Authors: Katz-Brull R, Degani H
The mechanism and kinetics of choline transport and phosphorylation in MCF7 human breast cancer cells was studied by 31P, 13C and 2H NMR, applying the zero trans method. Choline was transported by a...