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International Journal of Molecular Sciences, ISSN 1661-6596, 09/2018, Volume 19, Issue 9, p. 2654
Aquaglyceroporins (AQPs) are transmembrane channels that mediate glycerol release and glycerol uptake. They are involved in fat metabolism, with implications... 
Brown adipose tissue | White adipose tissue | Aquaglyceroporins | Pterostilbene | Resveratrol | white adipose tissue | BIOCHEMISTRY & MOLECULAR BIOLOGY | RATS | MECHANISMS | DIET-INDUCED OBESITY | CHEMISTRY, MULTIDISCIPLINARY | pterostilbene | aquaglyceroporins | NONALCOHOLIC FATTY LIVER | brown adipose tissue | METABOLISM | CHANNEL | INSULIN-RESISTANCE | GLYCEROL PERMEABILITY | GENE-EXPRESSION | AQUAPORIN-7 | resveratrol | Obesity - drug therapy | Rats, Wistar | Resveratrol - pharmacology | Stilbenes - therapeutic use | Adipose Tissue - cytology | Diet, High-Fat - adverse effects | Male | Resveratrol - therapeutic use | Stilbenes - pharmacology | Obesity - blood | Obesity - genetics | Anti-Obesity Agents - therapeutic use | Gene Expression Regulation - drug effects | Adipose Tissue - metabolism | Animals | Obesity - prevention & control | Aquaglyceroporins - genetics | Triglycerides - blood | Adipose Tissue - drug effects | Anti-Obesity Agents - pharmacology | Adipose tissue | Fat metabolism | Sucrose | Glycerol | Rats | Gene expression | Metabolism | Phenolic compounds | Lipolysis | Weight | Feeding | High fat diet | Polymerase chain reaction | Proteins | Thermogenesis | Diet | Phenols | Adipose tissue (brown) | Plasma | Body fat | Liver | Lipids | Food science | Adipocytes | Kinases | Rodents | DNA methylation | Obesity | Enzymes | Triglycerides | Fatty acids | Nutrition research
Journal Article
Journal of Hepatology, ISSN 0168-8278, 04/2019, Volume 70, Issue 1, pp. e808 - e810
Journal Article
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, ISSN 1422-0067, 11/2018, Volume 19, Issue 11, p. 3473
This review focuses on the role of 5'AMP-activated protein kinase (AMPK) in the effects of resveratrol (RSV) and some RSV derivatives on hepatic steatosis. In... 
TARGET | ACTIVATION | hepatocyte | liver | BIOCHEMISTRY & MOLECULAR BIOLOGY | CASCADE | SIRT1 | CHEMISTRY, MULTIDISCIPLINARY | POLYPHENOLS | METABOLISM | IN-VIVO | FATTY LIVER | AMPK | MICE | HEALTH | resveratrol | steatosis
Journal Article
Food & Function, ISSN 2042-6496, 01/2017, Volume 8, Issue 10, pp. 3576 - 3586
This study was designed to analyze the anti-adipogenic effect of fifteen phenolic compounds from various chemical groups in 3T3-L1 pre-adipocytes. Cells were... 
Catechin | Naringenin | Kaempferol | Genistein | Preadipocytes | Adipocytes | Gene expression | Phenolic compounds | Chemical compounds | Piceatannol | Epicatechin | Acids | Resveratrol | Quercetin | Phenols | Vanillic acid | Adipogenesis
Journal Article
Nutrients, ISSN 2072-6643, 09/2019, Volume 11, Issue 9, p. 2156
Several studies have observed that gut microbiota can play a critical role in nonalcoholic fatty liver disease (NAFLD) and nonalcoholic steatohepatitis (NASH)... 
liver | steatosis | dietary fat | gut microbiota | rodent | dysbiosis
Journal Article
Journal of Physiology and Biochemistry, ISSN 1138-7548, 11/2018, Volume 74, Issue 4, pp. 655 - 666
Some researchers have proposed important variations in adipose tissue among different strains of rats and mice in response to a high-caloric (hc) diet, but... 
Rats | Obesity | Sprague-Dawley | High-caloric feeding | Wistar | Strain | CLOCK GENES | RESVERATROL | PHYSIOLOGY | LINOLEIC-ACID | HIGH-FAT DIET | CIRCADIAN-RHYTHMS | BIOCHEMISTRY & MOLECULAR BIOLOGY | LIPOPROTEIN-LIPASE | STEATOSIS | PATHWAY | INFLAMMATION | EXPRESSION | Non-alcoholic Fatty Liver Disease - pathology | Liver - pathology | Liver - enzymology | Fatty Acid Synthases - metabolism | Rats, Wistar | Species Specificity | Diet, High-Fat - adverse effects | Non-alcoholic Fatty Liver Disease - etiology | Male | CLOCK Proteins - genetics | CLOCK Proteins - metabolism | Adiposity | Subcutaneous Fat, Abdominal - enzymology | Obesity - etiology | Lipogenesis | Weight Gain | Fatty Acid Synthases - genetics | Disease Models, Animal | Liver - metabolism | Organ Size | Non-alcoholic Fatty Liver Disease - metabolism | Random Allocation | Intra-Abdominal Fat - metabolism | Organ Specificity | Rats, Sprague-Dawley | Obesity - metabolism | Obesity - pathology | Triglycerides - metabolism | Gene Expression Regulation, Enzymologic | Animals | Subcutaneous Fat, Abdominal - pathology | Intra-Abdominal Fat - enzymology | Intra-Abdominal Fat - pathology | Subcutaneous Fat, Abdominal - metabolism | Adipose tissues | Enzymes | Liver diseases | RNA | Liver | Genes | Drugstores | Triglycerides | Gene expression | Fatty acids | Synthesis | Pharmacy | Physiological aspects | Research institutes
Journal Article
Journal Article
International Journal of Molecular Sciences, ISSN 1661-6596, 08/2017, Volume 18, Issue 8, p. 1770
Journal Article
Nutrition and Metabolism, ISSN 1743-7075, 2011, Volume 8, Issue 1, pp. 29 - 29
Background: A remarkable range of biological functions have been ascribed to resveratrol. Recently, this polyphenol has been shown to have body fat lowering... 
BODY-FAT | OBESITY | NUTRITION & DIETETICS | ADIPOCYTES | LINOLEIC-ACID | MICE | EXPRESSION | CANCER | SIRT1 | MODULATION | Adipose tissues | Polymerase chain reaction | Usage | Messenger RNA | Physiological aspects | Lipoprotein lipase | Research | Gene expression | Polyphenols | Polifenols | Teixit adipós
Journal Article
PLoS ONE, ISSN 1932-6203, 01/2013, Volume 8, Issue 1, p. e54319
Journal Article
International journal of molecular sciences, ISSN 1422-0067, 11/2018, Volume 19, Issue 11, p. 3473
This review focuses on the role of 5'-activated protein kinase (AMPK) in the effects of resveratrol (RSV) and some RSV derivatives on hepatic steatosis. In... 
AMPK | hepatocyte | liver | resveratrol | steatosis | Resveratrol - chemistry | AMP-Activated Protein Kinases - metabolism | Animals | Fatty Liver - pathology | Models, Biological | Humans | Fatty Liver - enzymology | Fatty Liver - prevention & control | Resveratrol - therapeutic use | Fatty Liver - drug therapy
Journal Article
Nutrition, ISSN 0899-9007, 2013, Volume 29, Issue 3, pp. 562 - 567
Journal Article
Obesity, ISSN 1930-7381, 01/2017, Volume 25, Issue 1, pp. 111 - 121
Objective To analyze whether a combination of quercetin (Q) and resveratrol (RSV) would induce a white adipose tissue (WAT) browning effect. Methods Thirty‐six... 
ENERGY | HOMEOSTASIS | ACTIVATION | NUTRITION & DIETETICS | C57BL/6J MICE | ADIPOCYTES | HIGH-FAT DIET | INSULIN-RESISTANCE | GLUCOSE | ENDOCRINOLOGY & METABOLISM | ADULT HUMANS | EXPRESSION | Body Weight | Bone Morphogenetic Protein 4 - genetics | Adipocytes - drug effects | Fatty Acid-Binding Proteins - metabolism | Stilbenes - pharmacology | RNA, Messenger - metabolism | Bone Morphogenetic Protein 4 - metabolism | Cyclooxygenase 2 - genetics | Adipose Tissue, White - physiology | Apoptosis Regulatory Proteins - genetics | Uncoupling Protein 1 - genetics | Uncoupling Protein 1 - metabolism | RNA, Messenger - genetics | Adipose Tissue, Brown - physiology | Rats | Amino Acid Transport Systems, Neutral - metabolism | Lipase - metabolism | Fatty Acid-Binding Proteins - genetics | Symporters - metabolism | Amino Acid Transport Systems, Neutral - genetics | Apoptosis Regulatory Proteins - metabolism | Animals | Diet | Quercetin - pharmacology | Adipocytes - metabolism | Symporters - genetics | Cyclooxygenase 2 - metabolism | Adipose Tissue, Brown - drug effects | Adipose Tissue, White - drug effects | Lipase - genetics | Obesity | Homeostasis | Mitochondrial DNA | Adipocytes | Gene expression | Fatty acids | Proteins | Studies | Thermogenesis | Rodents | Morphology | Polyphenols | Protein expression | Oxidation | Deoxyribonucleic acid--DNA
Journal Article