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期刊名:Cancer & metabolism

缩写:CANCER METAB

ISSN:N/A

e-ISSN:2049-3002

IF/分区:5.9/Q1

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共收录本刊相关文章索引367
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Javelin C Cheng,Samuel K McBrayer,Cristian Coarfa et al. Javelin C Cheng et al.
Background: Multiple myeloma (MM) is a fatal plasma cell malignancy exhibiting enhanced glucose consumption associated with an aerobic glycolytic phenotype (i.e., the Warburg effect). We have previously demonstrated that ...
Liang Zheng,Elaine D MacKenzie,Saadia A Karim et al. Liang Zheng et al.
Background: Loss of function of fumarate hydratase (FH), the mitochondrial tumor suppressor and tricarboxylic acid (TCA) cycle enzyme, is associated with a highly malignant form of papillary and collecting duct renal cell...
Claudia Calabrese,Luisa Iommarini,Ivana Kurelac et al. Claudia Calabrese et al.
Background: Aerobic glycolysis, namely the Warburg effect, is the main hallmark of cancer cells. Mitochondrial respiratory dysfunction has been proposed to be one of the major causes for such glycolytic shift. This hypoth...
Ido Goldstein,Keren Yizhak,Shalom Madar et al. Ido Goldstein et al.
Background: The p53 tumor suppressor protein is a transcription factor that initiates transcriptional programs aimed at inhibiting carcinogenesis. p53 represses metabolic pathways that support tumor development (such as g...
Stephen D Hursting,Sarah M Dunlap,Nikki A Ford et al. Stephen D Hursting et al.
Calorie restriction (CR) is one of the most potent broadly acting dietary interventions for inducing weight loss and for inhibiting cancer in experimental models. Translation of the mechanistic lessons learned from research on CR to cancer ...
Susana Ros,Almut Schulze Susana Ros
The increased glucose metabolism in cancer cells is required to fulfill their high energetic and biosynthetic demands. Changes in the metabolic activity of cancer cells are caused by the activation of oncogenes or loss of tumor suppressors....
Elena Anso,Andrew R Mullen,Dean W Felsher et al. Elena Anso et al.
Background: Cancer cells engage in aerobic glycolysis and glutaminolysis to fulfill their biosynthetic and energetic demands in part by activating MYC. Previous reports have characterized metabolic changes in proliferatin...