scholarly article | Q13442814 |
P356 | DOI | 10.3390/IJMS20092358 |
P953 | full work available at URL | https://www.mdpi.com/1422-0067/20/9/2358 |
P932 | PMC publication ID | 6539070 |
P698 | PubMed publication ID | 31085992 |
P50 | author | Michele Longo | Q57013582 |
Federica Zatterale | Q87407896 | ||
P2093 | author name string | Francesco Beguinot | |
Claudia Miele | |||
Pietro Formisano | |||
Luca Parrillo | |||
Michele Longo | |||
Gregory Alexander Raciti | |||
Jamal Naderi | |||
Federica Zatterale | |||
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Serum levels of retinol-binding protein-4 are associated with the presence and severity of coronary artery disease | Q34145836 | ||
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Diacylglycerol acyltransferase-2 (DGAT2) and monoacylglycerol acyltransferase-2 (MGAT2) interact to promote triacylglycerol synthesis | Q38962260 | ||
Mechanistic interplay between ceramide and insulin resistance | Q39005962 | ||
Biological control of appetite: A daunting complexity | Q39147573 | ||
Zfp423 Maintains White Adipocyte Identity through Suppression of the Beige Cell Thermogenic Gene Program | Q39726997 | ||
Sustained NFκB inhibition improves insulin sensitivity but is detrimental to muscle health | Q40181153 | ||
The "metabolically-obese," normal-weight individual. | Q40354127 | ||
Human epicardial adipose tissue has a specific transcriptomic signature depending on its anatomical peri-atrial, peri-ventricular, or peri-coronary location | Q41073922 | ||
Is the metabolically healthy obesity phenotype an irrelevant artifact for public health? | Q41368738 | ||
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Association of epicardial adipose tissue with serum level of cystatin C in type 2 diabetes. | Q41702418 | ||
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Markers of de novo lipogenesis in adipose tissue: associations with small adipocytes and insulin sensitivity in humans. | Q43414241 | ||
A comparative perspective on lipid storage in animals | Q43487407 | ||
MiR-146b is a regulator of human visceral preadipocyte proliferation and differentiation and its expression is altered in human obesity | Q43694905 | ||
Skeletal Muscle Lipid Content and Insulin Resistance: Evidence for a Paradox in Endurance-Trained Athletes | Q43819832 | ||
Pathogenesis of NIDDM. A balanced overview | Q43832606 | ||
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Molecular evidence supporting the portal theory: a causative link between visceral adiposity and hepatic insulin resistance | Q44746405 | ||
Secretory products from epicardial adipose tissue of patients with type 2 diabetes mellitus induce cardiomyocyte dysfunction | Q45287442 | ||
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Targeted Induction of Ceramide Degradation Leads to Improved Systemic Metabolism and Reduced Hepatic Steatosis | Q34485836 | ||
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Inflammatory links between obesity and metabolic disease | Q35015802 | ||
Adipose tissue quantification by imaging methods: a proposed classification | Q35046039 | ||
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Subcutaneous adipose cell size and distribution: relationship to insulin resistance and body fat | Q35130591 | ||
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Targeting curcusomes to inflammatory dendritic cells inhibits NF-κB and improves insulin resistance in obese mice | Q35405562 | ||
Lipid-overloaded enlarged adipocytes provoke insulin resistance independent of inflammation. | Q35516558 | ||
A novel criterion for identifying metabolically obese but normal weight individuals using the product of triglycerides and glucose. | Q35579345 | ||
The role of hepatic lipids in hepatic insulin resistance and type 2 diabetes | Q35811523 | ||
The WNT Inhibitor Dickkopf 1 and Bone Morphogenetic Protein 4 Rescue Adipogenesis in Hypertrophic Obesity in Humans | Q35902839 | ||
Transcriptional control of adipocyte formation | Q35962266 | ||
Macrophage-mediated inflammation in metabolic disease | Q36060408 | ||
The cell size and distribution of adipocytes from subcutaneous and visceral fat is associated with type 2 diabetes mellitus in humans | Q36068560 | ||
Effects of Atorvastatin (80 mg) Therapy on Quantity of Epicardial Adipose Tissue in Patients Undergoing Pulmonary Vein Isolation for Atrial Fibrillation | Q36172684 | ||
The adipose organ at a glance | Q36179944 | ||
Associations of Different Adipose Tissue Depots with Insulin Resistance: A Systematic Review and Meta-analysis of Observational Studies | Q36387775 | ||
Elevated expression of transforming growth factor-beta in adipose tissue from obese mice | Q36437819 | ||
Lipotoxicity, overnutrition and energy metabolism in aging | Q36456209 | ||
Loss of white adipose hyperplastic potential is associated with enhanced susceptibility to insulin resistance | Q36469271 | ||
Adipose tissue: from lipid storage compartment to endocrine organ | Q36491483 | ||
WISP2 regulates preadipocyte commitment and PPARγ activation by BMP4. | Q36616934 | ||
Insulin resistance and hyperinsulinemia: you can't have one without the other | Q36756593 | ||
Myocardial, perivascular, and epicardial fat | Q36783911 | ||
Effects of Moderate and Subsequent Progressive Weight Loss on Metabolic Function and Adipose Tissue Biology in Humans with Obesity | Q36803685 | ||
Obesogenic memory can confer long-term increases in adipose tissue but not liver inflammation and insulin resistance after weight loss | Q36814629 | ||
Cardiac energy metabolism in obesity | Q36912047 | ||
Adipose Tissue Hypoxia, Inflammation, and Fibrosis in Obese Insulin-Sensitive and Obese Insulin-Resistant Subjects | Q36935513 | ||
PPARgamma and C/EBP factors orchestrate adipocyte biology via adjacent binding on a genome-wide scale | Q36961001 | ||
Paradoxical effects of increased expression of PGC-1alpha on muscle mitochondrial function and insulin-stimulated muscle glucose metabolism | Q37006469 | ||
Adipose tissue fibrosis, hypertrophy, and hyperplasia: Correlations with diabetes in human obesity. | Q37036130 | ||
Reduced adipose tissue oxygenation in human obesity: evidence for rarefaction, macrophage chemotaxis, and inflammation without an angiogenic response | Q37105363 | ||
Liver lipid metabolism | Q37162701 | ||
Abdominal subcutaneous adipose tissue: a protective fat depot? | Q37189254 | ||
Exercise-induced alterations in intramyocellular lipids and insulin resistance: the athlete's paradox revisited | Q37246314 | ||
BMP signaling pathway is required for commitment of C3H10T1/2 pluripotent stem cells to the adipocyte lineage | Q37293278 | ||
Adipogenesis and WNT signalling | Q37325263 | ||
Worldwide trends in diabetes since 1980: a pooled analysis of 751 population-based studies with 4.4 million participants | Q37368135 | ||
Mitochondrial fat oxidation is essential for lipid-induced inflammation in skeletal muscle in mice. | Q37444306 | ||
Ablation of PRDM16 and beige adipose causes metabolic dysfunction and a subcutaneous to visceral fat switch. | Q37580289 | ||
The distinction of metabolically 'healthy' from 'unhealthy' obese individuals | Q37633348 | ||
Overexpressing the novel autocrine/endocrine adipokine WISP2 induces hyperplasia of the heart, white and brown adipose tissues and prevents insulin resistance | Q37668148 | ||
Imaging mass spectrometry demonstrates age-related decline in human adipose plasticity | Q37677435 | ||
Specific CpG hyper-methylation leads to Ankrd26 gene down-regulation in white adipose tissue of a mouse model of diet-induced obesity. | Q37684072 | ||
Lipid Use and Misuse by the Heart. | Q37684850 | ||
Reduced LPL and subcutaneous lipid storage capacity are associated with metabolic syndrome in postmenopausal women with obesity | Q37711167 | ||
Adipose Cell Size and Regional Fat Deposition as Predictors of Metabolic Response to Overfeeding in Insulin-Resistant and Insulin-Sensitive Humans | Q37741913 | ||
Intramyocardial lipid accumulation in the failing human heart resembles the lipotoxic rat heart | Q50782443 | ||
Increased fat accumulation in liver may link insulin resistance with subcutaneous abdominal adipocyte enlargement, visceral adiposity, and hypoadiponectinemia in obese individuals | Q51454244 | ||
Adipose Type One Innate Lymphoid Cells Regulate Macrophage Homeostasis through Targeted Cytotoxicity | Q52902953 | ||
Transplanted Bone Marrow-Derived Cells Contribute to Human Adipogenesis. | Q52929779 | ||
Local proliferation of macrophages in adipose tissue during obesity-induced inflammation | Q53078046 | ||
Insulin action and resistance in obesity and type 2 diabetes | Q53733290 | ||
Assessing adiposity: a scientific statement from the American Heart Association | Q54268105 | ||
Angiotensin 1-7 ameliorates diabetic cardiomyopathy and diastolic dysfunction in db/db mice by reducing lipotoxicity and inflammation | Q54386704 | ||
Perivascular Adipose Tissue as a Relevant Fat Depot for Cardiovascular Risk in Obesity. | Q55122068 | ||
Randomized comparison of reduced fat and reduced carbohydrate hypocaloric diets on intrahepatic fat in overweight and obese human subjects | Q56981583 | ||
PPARγΔ5, a Naturally Occurring Dominant-Negative Splice Isoform, Impairs PPARγ Function and Adipocyte Differentiation | Q58606004 | ||
Obesity and cardiovascular disease: revisiting an old relationship | Q58614549 | ||
The mechanisms by which both heterozygous peroxisome proliferator-activated receptor gamma (PPARgamma) deficiency and PPARgamma agonist improve insulin resistance | Q74453774 | ||
Biology and function of adipose tissue macrophages, dendritic cells and B cells | Q87884187 | ||
Increased de novo ceramide synthesis and accumulation in failing myocardium | Q87989162 | ||
The effect of diet and exercise on lipid droplet dynamics in human muscle tissue | Q87994036 | ||
Macrophage HIF-2α ameliorates adipose tissue inflammation and insulin resistance in obesity | Q88114841 | ||
PPARs and Metabolic Disorders Associated with Challenged Adipose Tissue Plasticity | Q90420240 | ||
Impaired Adipogenesis and Dysfunctional Adipose Tissue in Human Hypertrophic Obesity | Q90685537 | ||
Adipogenesis and metabolic health | Q90893796 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 2358 | |
P577 | publication date | 2019-01-01 | |
2019-05-13 | |||
P1433 | published in | International Journal of Molecular Sciences | Q3153277 |
P1476 | title | Adipose Tissue Dysfunction as Determinant of Obesity-Associated Metabolic Complications | |
P478 | volume | 20 |
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