Non-glucose metabolism in cancer cells--is it all in the fat?
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Chinese Herbs Interfering with Cancer Reprogramming MetabolismLipid metabolic reprogramming in cancer cellsTargeting glycogen metabolism in bladder cancerAntagonizing Bcl-2 family members sensitizes neuroblastoma and Ewing's sarcoma to an inhibitor of glutamine metabolismApolipoprotein A-II Plus Lipid Emulsion Enhance Cell Growth via SR-B1 and Target Pancreatic Cancer In Vitro and In VivoThe selective target of capsaicin on FASN expression and de novo fatty acid synthesis mediated through ROS generation triggers apoptosis in HepG2 cells.Lactate dehydrogenase-B is silenced by promoter methylation in a high frequency of human breast cancers.Tumor mechanics and metabolic dysfunction.A Selective Novel Peroxisome Proliferator-Activated Receptor (PPAR)-α Antagonist Induces Apoptosis and Inhibits Proliferation of CLL Cells In Vitro and In VivoRedox regulation of the epigenetic landscape in cancer: a role for metabolic reprogramming in remodeling the epigenomeThe regulation of cellular metabolism by tumor suppressor p53.Fatty Acid Oxidation-Driven Src Links Mitochondrial Energy Reprogramming and Oncogenic Properties in Triple-Negative Breast Cancer.High blood sugar levels significantly impact the prognosis of colorectal cancer patients through down-regulation of microRNA-16 by targeting Myb and VEGFR2.Role of abnormal lipid metabolism in development, progression, diagnosis and therapy of pancreatic cancer.Metastasis suppressor KISS1 seems to reverse the Warburg effect by enhancing mitochondrial biogenesis.Parallels between embryo and cancer cell metabolism.The role of cholesterol metabolism and cholesterol transport in carcinogenesis: a review of scientific findings, relevant to future cancer therapeutics.Mitochondrial metabolism, reactive oxygen species, and macrophage function-fishing for insights.Positive regulation of prostate cancer cell growth by lipid droplet forming and processing enzymes DGAT1 and ABHD5.[6]-Gingerol inhibits de novo fatty acid synthesis and carnitine palmitoyltransferase-1 activity which triggers apoptosis in HepG2.Innovative food products for cancer patients: future directions.Epistructured catechins, EGCG and EC facilitate apoptosis induction through targeting de novo lipogenesis pathway in HepG2 cells.Stress-activated miR-21/miR-21* in hepatocytes promotes lipid and glucose metabolic disorders associated with high-fat diet consumption.Increased Glutamine Consumption in Cisplatin-Resistant Cells Has a Negative Impact on Cell Growth.Loss of function of miR-342-3p results in MCT1 over-expression and contributes to oncogenic metabolic reprogramming in triple negative breast cancer
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Non-glucose metabolism in cancer cells--is it all in the fat?
description
article científic
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article scientifique
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articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
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artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
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artículo científico
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name
Non-glucose metabolism in cancer cells--is it all in the fat?
@en
type
label
Non-glucose metabolism in cancer cells--is it all in the fat?
@en
prefLabel
Non-glucose metabolism in cancer cells--is it all in the fat?
@en
P2093
P2860
P1476
Non-glucose metabolism in cancer cells--is it all in the fat?
@en
P2093
John Lunec
Kim Bartlett
Swethajit Biswas
P2860
P2888
P304
P356
10.1007/S10555-012-9384-6
P577
2012-12-01T00:00:00Z
P6179
1028362175