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Conceptual Background and Bioenergetic/Mitochondrial Aspects of Oncometabolism

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2014
ISBN13: 9780124166189
Rubricering
Elsevier Science e druk, 2014 9780124166189
Onderdeel van serie Methods in Enzymology
€ 194,75
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Samenvatting

Volume 542 of Methods in Enzymology continues the legacy of this premier serial with quality chapters authored by leaders in the field. This new volume covers research methods providing a theoretical overview on metabolic alterations of cancer cells and a series of protocols that can be employed to study oncometabolism, in vitro, ex vivo and in vivo. Malignant cells exhibit metabolic changes when compared to their normal counterparts, owing to both genetic and epigenetic alterations. Although such a metabolic rewiring has recently been indicated as "yet another" general hallmark of cancer, accumulating evidence suggests that the metabolic alterations of each neoplasm rather represent a molecular signature that intimately accompanies, and hence cannot be severed from, all facets of malignant transformation.

Specificaties

ISBN13:9780124166189
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. The metabolic alterations of cancer cells<br>2. Autophagy and cancer metabolism<br>3. Regulation of cancer metabolism by oncogenes and tumor suppressors<br>4. Crosstalk between cell death regulation and metabolism<br>5. Techniques to monitor glycolysis<br>6. Measurement of enolase activity in cell lysates<br>7. Extracellular flux analysis to monitor glycolytic rates and mitochondrial oxygen consumption<br>8. Conventional techniques to monitor mitochondrial oxygen consumption<br>9. Combined high-resolution respirometry and fluorometry. Validation of safranin for determination of mitochondrial membrane potential.<br>10. Kinetic analysis of local oxygenation and respiratory responses of mammalian cells using intracellular oxygen-sensitive probes and time-resolved fluorescence plate reader <br>11. 13C isotope-assisted methods for quantifying glutamine metabolism in cancer cells<br>12. Measurement of fatty acid oxidation rates in animal tissues and cell lines<br>13. Methods to assess steroid hormone induced lipid accumulation in cancer cells <br>14.Use of chemical probes to monitor mitochondrial ROS production by fluorescence dyes for flow cytometry and spectrofluorometry<br>15. Rapid methods to monitor mitochondrial and cellular ROS production by fluorescence microscopy and fluorometry<br>16. Genetically encoded redox sensors in biomedical science<br>17. Real time measurement of metabolic states in living cells using genetically encoded NADH sensors<br>18. Use of genetically encoded sensors to monitor cytosolic ATP/ADP ratio in living cells<br>19.Methods to monitor and compare mitochondrial and glycolytic ATP production in cells<br>20. Measurement of ADP-ATP exchange in relation to membrane potential and oxygen consumption in mitochondria with improved calibration<br>21. Analysis of hypoxia-induced metabolic reprogramming</p>
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        Conceptual Background and Bioenergetic/Mitochondrial Aspects of Oncometabolism