Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
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Skeletal muscle PGC-1α controls whole-body lactate homeostasis through estrogen-related receptor α-dependent activation of LDH B and repression of LDH ATargeting Cancer Metabolism - Revisiting the Warburg EffectsMitochondria in Cancer Energy Metabolism: Culprits or Bystanders?Cancer metabolic reprogramming: importance, main features, and potentials for precise targeted anti-cancer therapiesReexamining cancer metabolism: Lactate production for carcinogenesis could be the purpose and explanation of the Warburg effectHypoxia, cancer metabolism and the therapeutic benefit of targeting lactate/H(+) symportersDeterminants of brain cell metabolic phenotypes and energy substrate utilization unraveled with a modeling approachEnergy metabolism regulated by HDAC inhibitor attenuates cardiac injury in hemorrhagic rat model.Low-Dose Paclitaxel Inhibits Tumor Cell Growth by Regulating Glutaminolysis in Colorectal Carcinoma Cells.Cancer heterogeneity is not compatible with one unique cancer cell metabolic mapCell surface lactate receptor GPR81 is crucial for cancer cell survival.Lactate dehydrogenase-B is silenced by promoter methylation in a high frequency of human breast cancers.Multivariate modeling of proteins related to trapezius myalgia, a comparative study of female cleaners with or without pain.Lactate production by the mammalian blastocyst: manipulating the microenvironment for uterine implantation and invasion?Lactate dehydrogenase B is associated with the response to neoadjuvant chemotherapy in oral squamous cell carcinomaGlobal gene expression in pseudomyxoma peritonei, with parallel development of two immortalized cell lines.Toxic Markers of Matrine Determined Using (1) H-NMR-Based Metabolomics in Cultured Cells In Vitro and Rats In Vivo.Significance of glycolytic metabolism-related protein expression in colorectal cancer, lymph node and hepatic metastasis.Increased Interstitial Concentrations of Glutamate and Pyruvate in Vastus Lateralis of Women with Fibromyalgia Syndrome Are Normalized after an Exercise Intervention - A Case-Control Study.Mitochondrial Metabolism as a Treatment Target in Anaplastic Thyroid Cancer.Limited capacity for glucose oxidation in fetal sheep with intrauterine growth restrictionAnticancer agents that counteract tumor glycolysis.Active glycolytic metabolism in CD133(+) hepatocellular cancer stem cells: regulation by MIR-122.Combination of lactate calcium salt with 5-indanesulfonamide and α-cyano-4-hydroxycinnamic acid to enhance the antitumor effect on HCT116 cells via intracellular acidificationNutrient transporters: the Achilles' heel of anabolism.The Role of Monocarboxylate Transporters and Their Chaperone CD147 in Lactate Efflux Inhibition and the Anticancer Effects of Terminalia chebula in Neuroblastoma Cell Line N2-A.RAF265 inhibits the growth of advanced human melanoma tumors.Cancer-generated lactic acid: a regulatory, immunosuppressive metabolite?Endobiogeny: a global approach to systems biology (part 2 of 2)CD147 regulates the expression of MCT1 and lactate export in multiple myeloma cells.Inhibition of glucose metabolism prevents glycosylation of the glutamine transporter ASCT2 and promotes compensatory LAT1 upregulation in leukemia cells.Lactate Shuttles in Neuroenergetics-Homeostasis, Allostasis and Beyond.Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production.Endothelial cell metabolism and tumour angiogenesis: glucose and glutamine as essential fuels and lactate as the driving force.Proteomics and metabolomics in cancer drug development.Tumor glycolysis as a target for cancer therapy: progress and prospects.Tumor aerobic glycolysis: new insights into therapeutic strategies with targeted delivery.Lactate as an insidious metabolite due to the Warburg effect.Glucose, lactate, and shuttling of metabolites in vertebrate retinasCancer generated lactic acid: Novel therapeutic approach.
P2860
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P2860
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
description
2011 nî lūn-bûn
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2011 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
2011年の論文
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2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@ast
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@en
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@nl
type
label
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@ast
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@en
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@nl
prefLabel
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@ast
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@en
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@nl
P2860
P3181
P356
P1476
Lactate shuttles at a glance: from physiological paradigms to anti-cancer treatments
@en
P2093
P2860
P304
P3181
P356
10.1242/DMM.007724
P407
P577
2011-11-01T00:00:00Z