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ab128568 has been referenced in 43 publications.

  • Wang C  et al. CPT1A-mediated succinylation of S100A10 increases human gastric cancer invasion. J Cell Mol Med 23:293-305 (2019). PubMed: 30394687
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  • Zhu J  et al. NKX2-8 deletion-induced reprogramming of fatty acid metabolism confers chemoresistance in epithelial ovarian cancer. EBioMedicine 43:238-252 (2019). PubMed: 31047858
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  • Chowdhury PS  et al. PPAR-Induced Fatty Acid Oxidation in T Cells Increases the Number of Tumor-Reactive CD8+ T Cells and Facilitates Anti-PD-1 Therapy. Cancer Immunol Res 6:1375-1387 (2018). PubMed: 30143538
  • Jiao S  et al. Pro-angiogenic Role of Danqi Pill Through Activating Fatty Acids Oxidation Pathway Against Coronary Artery Disease. Front Pharmacol 9:1414 (2018). PubMed: 30564122
  • Petovári G  et al. Targeting cellular metabolism using rapamycin and/or doxycycline enhances anti-tumour effects in human glioma cells. Cancer Cell Int 18:211 (2018). PubMed: 30574020
  • Moody L  et al. Epigenetic regulation of carnitine palmitoyltransferase 1 (Cpt1a) by high fat diet. Biochim Biophys Acta Gene Regul Mech 1862:141-152 (2018). PubMed: 30605728
  • Zhang J  et al. Establishment of a novel hepatic steatosis cell model by Cas9/sgRNA-mediated DGK? gene knockout. Mol Med Rep 17:2169-2176 (2018). PubMed: 29207074
  • Rodriguez-Echevarria R  et al. Diet switch and omega-3 hydroxy-fatty acids display differential hepatoprotective effects in an obesity/nonalcoholic fatty liver disease model in mice. World J Gastroenterol 24:461-474 (2018). PubMed: 29398867
  • Marín-Royo G  et al. Inhibition of galectin-3 ameliorates the consequences of cardiac lipotoxicity in a rat model of diet-induced obesity. Dis Model Mech 11:N/A (2018). PubMed: 29361517
  • Sakr HF  et al. Possible mechanisms underlying fatty liver in a rat model of male hypogonadism: A protective role for testosterone. Steroids 135:21-30 (2018). WB . PubMed: 29674209
  • Brown ZJ  et al. Carnitine palmitoyltransferase gene upregulation by linoleic acid induces CD4+ T cell apoptosis promoting HCC development. Cell Death Dis 9:620 (2018). PubMed: 29795111
  • Krencz I  et al. In situ analysis of mTORC1/2 and cellular metabolism-related proteins in human Lymphangioleiomyomatosis. Hum Pathol N/A:N/A (2018). PubMed: 29885404
  • Zhang L  et al. The Protective Activities of Dietary Sea Cucumber Cerebrosides against Atherosclerosis through Regulating Inflammation and Cholesterol Metabolism in Male Mice. Mol Nutr Food Res 62:e1800315 (2018). PubMed: 29883529
  • Dihingia A  et al. Hexane-Isopropanolic Extract of Tungrymbai, a North-East Indian fermented soybean food prevents hepatic steatosis via regulating AMPK-mediated SREBP/FAS/ACC/HMGCR and PPARa/CPT1A/UCP2 pathways. Sci Rep 8:10021 (2018). PubMed: 29968750
  • Wang YN  et al. CPT1A-mediated fatty acid oxidation promotes colorectal cancer cell metastasis by inhibiting anoikis. Oncogene N/A:N/A (2018). PubMed: 29995871
  • Trinidad AG  et al. Pyruvate dehydrogenase kinase 4 exhibits a novel role in the activation of mutant KRAS, regulating cell growth in lung and colorectal tumour cells. Oncogene 36:6164-6176 (2017). WB . PubMed: 28692044
  • Iannucci LF  et al. Metabolomic analysis shows differential hepatic effects of T2 and T3 in rats after short-term feeding with high fat diet. Sci Rep 7:2023 (2017). PubMed: 28515456
  • Gracia A  et al. Are miRNA-103, miRNA-107 and miRNA-122 Involved in the Prevention of Liver Steatosis Induced by Resveratrol? Nutrients 9:N/A (2017). WB ; Rat . PubMed: 28375178
  • Balaban S  et al. Adipocyte lipolysis links obesity to breast cancer growth: adipocyte-derived fatty acids drive breast cancer cell proliferation and migration. Cancer Metab 5:1 (2017). WB . PubMed: 28101337
  • Singh KB & Singh SV Fatty Acid Synthesis Intermediates Represent Novel Noninvasive Biomarkers of Prostate Cancer Chemoprevention by Phenethyl Isothiocyanate. Cancer Prev Res (Phila) 10:279-289 (2017). PubMed: 28292742
  • Jernberg JN  et al. Developmental regulation and localization of carnitine palmitoyltransferases (CPTs) in rat brain. J Neurochem 142:407-419 (2017). PubMed: 28512781
  • Neufeld-Cohen A  et al. Circadian control of oscillations in mitochondrial rate-limiting enzymes and nutrient utilization by PERIOD proteins. Proc Natl Acad Sci U S A 113:E1673-82 (2016). PubMed: 26862173
  • Kong Q  et al. Tangshen formula attenuates hepatic steatosis by inhibiting hepatic lipogenesis and augmenting fatty acid oxidation in db/db mice. Int J Mol Med 38:1715-1726 (2016). WB ; Mouse . PubMed: 27840945
  • Moon JS  et al. NOX4-dependent fatty acid oxidation promotes NLRP3 inflammasome activation in macrophages. Nat Med 22:1002-12 (2016). PubMed: 27455510
  • Hinds TD  et al. Biliverdin Reductase A Attenuates Hepatic Steatosis by Inhibition of Glycogen Synthase Kinase (GSK) 3ß Phosphorylation of Serine 73 of Peroxisome Proliferator-activated Receptor (PPAR) a. J Biol Chem 291:25179-25191 (2016). PubMed: 27738106
  • Wang Z  et al. Effect of Allopurinol on Myocardial Energy Metabolism in Chronic Heart Failure Rats After Myocardial Infarct. Int Heart J 57:753-759 (2016). PubMed: 27818481
  • Jung YY  et al. Expression of Lipid Metabolism-Related Proteins in Metastatic Breast Cancer. PLoS One 10:e0137204 (2015). IHC . PubMed: 26334757
  • Vial G  et al. Imeglimin normalizes glucose tolerance and insulin sensitivity and improves mitochondrial function in liver of a high-fat, high-sucrose diet mice model. Diabetes 64:2254-64 (2015). WB ; Mouse . PubMed: 25552598
  • Nag S  et al. Chronic angiotensin AT2R activation prevents high-fat diet-induced adiposity and obesity in female mice independent of estrogen. Metabolism 64:814-25 (2015). PubMed: 25869303
  • Kim S  et al. Differential expression of lipid metabolism-related proteins in different breast cancer subtypes. PLoS One 10:e0119473 (2015). PubMed: 25751270
  • Ehara T  et al. Ligand-activated PPARa-dependent DNA demethylation regulates the fatty acid ß-oxidation genes in the postnatal liver. Diabetes 64:775-84 (2015). WB ; Mouse . PubMed: 25311726
  • Seillier M  et al. Defects in mitophagy promote redox-driven metabolic syndrome in the absence of TP53INP1. EMBO Mol Med 7:802-18 (2015). WB . PubMed: 25828351
  • Hong Q  et al. Capsinoids suppress fat accumulation via lipid metabolism. Mol Med Rep 11:1669-74 (2015). WB ; Mouse . PubMed: 25421144
  • Carrier B  et al. Alpha-lipoic acid reduces LDL-particle number and PCSK9 concentrations in high-fat fed obese Zucker rats. PLoS One 9:e90863 (2014). WB ; Rat . PubMed: 24595397
  • Horie T  et al. MicroRNA-33b knock-in mice for an intron of sterol regulatory element-binding factor 1 (Srebf1) exhibit reduced HDL-C in vivo. Sci Rep 4:5312 (2014). Mouse . PubMed: 24931346
  • Rone MB  et al. Steroidogenesis in MA-10 mouse Leydig cells is altered via fatty acid import into the mitochondria. Biol Reprod 91:96 (2014). PubMed: 25210128
  • Ryu SP Silkworm pupae powder ingestion increases fat metabolism in swim-trained rats. J Exerc Nutrition Biochem 18:141-9 (2014). PubMed: 25566449
  • Byersdorfer CA  et al. Effector T cells require fatty acid metabolism during murine graft-versus-host disease. Blood 122:3230-7 (2013). PubMed: 24046012
  • Shulga YV  et al. Diacylglycerol kinase delta promotes lipogenesis. Biochemistry 52:7766-76 (2013). WB ; Mouse . PubMed: 24090246
  • Horie T  et al. MicroRNA-33 deficiency reduces the progression of atherosclerotic plaque in ApoE-/- mice. J Am Heart Assoc 1:e003376 (2012). Mouse . PubMed: 23316322

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