0000000000188887

AUTHOR

ÁNgela Vinué

showing 14 related works from this author

Increased dosage of Ink4/Arf protects against glucose intolerance and insulin resistance associated with aging

2013

Recent genome-wide association studies have linked type-2 diabetes mellitus to a genomic region in chromosome 9p21 near the Ink4/Arf locus, which encodes tumor suppressors that are up-regulated in a variety of mammalian organs during aging. However, it is unclear whether the susceptibility to type-2 diabetes is associated with altered expression of the Ink4/Arf locus. In the present study, we investigated the role of Ink4/Arf in age-dependent alterations of insulin and glucose homeostasis using Super-Ink4/Arf mice which bear an extra copy of the entire Ink4/Arf locus. We find that, in contrast to age-matched wild-type controls, Super-Ink4/Arf mice do not develop glucose intolerance with agi…

p16ink4amedicine.medical_specialtyAgingGlucose uptakemedicine.medical_treatmentMice TransgenicCarbohydrate metabolismCDKN2BMiceCDKN2AInsulin resistanceInsulin receptor substrateInternal medicineDiabetes mellitusinsulin resistanceGlucose IntolerancemedicineGlucose homeostasisAnimalsInsulininsulin signalingCyclin-Dependent Kinase Inhibitor p16biologydiabetesADP-Ribosylation FactorsInsulin18F-fluorodeoxyglucose-PETARFCell Biologypancreatic isletmedicine.diseaseMice Inbred C57BLInsulin receptorEndocrinologyGlucosebiology.proteinInsulin Resistancep15ink4bGenome-Wide Association Study
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Insulin resistance aggravates atherosclerosis by reducing vascular smooth muscle cell survival and increasing CX3CL1/CX3CR1 axis.

2014

Aims Insulin resistance (IR) is a major risk factor for cardiovascular disease and atherosclerosis. Life-threatening acute events are mainly due to rupture of unstable plaques, and the role of vascular smooth muscle cells (VSMCs) in this process in IR, Type 2 diabetes mellitus, and metabolic syndrome (T2DM/MetS) has not been fully addressed. Therefore, the role of VSMC survival in the generation of unstable plaques in T2DM/MetS and the involvement of inflammatory mediators was investigated. Methods and results Defective insulin receptor substrate 2 (IRS2)-mediated signalling produced insulin-resistant VSMCs with reduced survival, migration, and higher apoptosis than control cells. Silencing…

medicine.medical_specialtyVascular smooth musclePhysiologyCell Survivalmedicine.medical_treatmentMyocytes Smooth MuscleCX3C Chemokine Receptor 1InflammationMice TransgenicBiologyMuscle Smooth VascularInsulin resistanceApolipoproteins EPhysiology (medical)Internal medicinemedicineAnimalsHumansProtein kinase BPI3K/AKT/mTOR pathwayCells CulturedMice KnockoutChemokine CX3CL1Insulinmedicine.diseaseAtherosclerosisIRS2Mice Inbred C57BLAtheromaEndocrinologyDiabetes Mellitus Type 2cardiovascular systemReceptors Chemokinemedicine.symptomInsulin ResistanceCardiology and Cardiovascular MedicineSignal TransductionCardiovascular research
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Enhanced levels of the light/lymphotoxin-beta receptor inflammatory axis in metabolic syndrome patients

2014

medicine.medical_specialtyEndocrinologybusiness.industryInternal medicinemedicineMetabolic syndromeCardiology and Cardiovascular MedicineLymphotoxin beta receptormedicine.diseasebusinessAtherosclerosis
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Overexpression of glucose 6 phosphate dehydrogenase preserves mouse pancreatic beta cells function until late in life.

2021

NAD(P)H donates electrons for reductive biosynthesis and antioxidant defense across all forms of life. Glucose-6- phosphate dehydrogenase (G6PD) is a critical enzyme to provide NADPH. G6PD deficiency is present in more than 400 million people worldwide. This enzymopathy provides protection against malaria but sensitizes cells to oxidative stressors. Oxidative stress has been involved in the pathogenesis of the diabetic complications and several studies have provided evidences of a link between G6PD deficiency and type 2 diabetes (T2D). We hypothesized that a moderate overexpression of G6PD (G6PD-Tg) could protect β-cells from age-associated oxidative stress thus reducing the risk of develop…

0301 basic medicineAgingmedicine.medical_specialtyOxidative phosphorylationType 2 diabetesGlucosephosphate Dehydrogenasemedicine.disease_causeBiochemistry03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicinehemic and lymphatic diseasesPhysiology (medical)Internal medicineDiabetes mellitusInsulin-Secreting Cellsparasitic diseasesNADPHmedicineGlucose-6-phosphate dehydrogenaseAnimalsPancreatic isletsDiabetesWild typenutritional and metabolic diseasesmedicine.diseaseOxidative Stress030104 developmental biologyEndocrinologymedicine.anatomical_structureGlucosephosphate Dehydrogenase DeficiencychemistryDiabetes Mellitus Type 2Oxidative stressPancreas030217 neurology & neurosurgeryOxidative stressFree radical biologymedicine
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Impact of Cholesterol Metabolism in Immune Cell Function and Atherosclerosis

2020

Cholesterol, the most important sterol in mammals, helps maintain plasma membrane fluidity and is a precursor of bile acids, oxysterols, and steroid hormones. Cholesterol in the body is obtained from the diet or can be de novo synthetized. Cholesterol homeostasis is mainly regulated by the liver, where cholesterol is packed in lipoproteins for transport through a tightly regulated process. Changes in circulating lipoprotein cholesterol levels lead to atherosclerosis development, which is initiated by an accumulation of modified lipoproteins in the subendothelial space; this induces significant changes in immune cell differentiation and function. Beyond lesions, cholesterol levels also play …

0301 basic medicineNeutrophilsLipoproteinsT-LymphocytesT cellInflammationlcsh:TX341-641Review030204 cardiovascular system & hematologyMonocytesMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineImmune systemimmune cellsmedicineAnimalsHomeostasisHumansCell ProliferationImmunity CellularNutrition and DieteticsChemistryCholesterolMacrophagesMonocytecholesterolLipid MetabolismSterolhematopoiesisCell biology030104 developmental biologymedicine.anatomical_structureLiverinflammationlipids (amino acids peptides and proteins)medicine.symptomatherosclerosismetabolismlcsh:Nutrition. Foods and food supplyIntracellularFood ScienceHormoneNutrients
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INACTIVATION OF HEPATIC LIPASE DECREASES ATHEROSCLEROSIS IN A MOUSE MODEL OF INSULIN RESISTANCE

2014

medicine.medical_specialtyInsulin resistanceEndocrinologyChemistryInternal medicinemedicineHepatic lipaseCardiology and Cardiovascular Medicinemedicine.disease
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Ink4/Arf locus restores glucose tolerance and insulin sensitivity by reducing hepatic steatosis and inflammation in mice with impaired IRS2-dependent…

2015

Single nucleotide polymorphisms near the Ink4/Arf locus have been associated with type-2 diabetes mellitus. Previous studies indicate a protective role of the locus in the carbohydrate metabolism derangement associated with ageing in wild-type mice. The present study demonstrates that the increased Ink4/Arf locus expression in 1-year-old mice, partially-deficient for the insulin receptor substrate (IRS)2 (Irs2 +/-SuperInk4/Arf mice) ameliorates hepatic steatosis, inflammation and insulin resistance. Irs2 +/-SuperInk4/Arf mice displayed improved glucose tolerance and insulin sensitivity compared with Irs2 +/- mice which were glucose intolerant and insulin resistant compared with age-matched …

Inflammationmedicine.medical_specialtySteatosisMacrophageInsulinmedicine.medical_treatmentDiabetesInsulin resistanceCarbohydrate metabolismBiologymedicine.diseaseIRS2EndocrinologyInsulin resistanceInternal medicineInsulin receptor substratemedicineMolecular MedicineGlucose homeostasisSteatosisCDKN2A/2BMolecular BiologyProtein kinase BBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
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Dissecting Abdominal Aortic Aneurysm Is Aggravated by Genetic Inactivation of LIGHT (TNFSF14)

2021

Abdominal aortic aneurysm (AAA), is a complex disorder characterized by vascular vessel wall remodeling. LIGHT (TNFSF14) is a proinflammatory cytokine associated with vascular disease. In the present study, the impact of genetic inactivation of Light was investigated in dissecting AAA induced by angiotensin II (AngII) in the Apolipoprotein E-deficient (Apoe−/−) mice. Studies in aortic human (ah) vascular smooth muscle cells (VSMC) to study potential translation to human pathology were also performed. AngII-treated Apoe−/−Light−/− mice displayed increased abdominal aorta maximum diameter and AAA severity compared with Apoe−/− mice. Notably, reduced smooth muscle α-actin+ area and Acta2 and C…

Dissecting Abdominal Aortic Aneurysmmedicine.medical_specialtyVascular smooth musclebiologyApolipoprotein BQH301-705.5ChemistryMedicine (miscellaneous)Angiotensin IIArticleTNFSF14/LIGHTGeneral Biochemistry Genetics and Molecular BiologyProinflammatory cytokineabdominal aortic aneurysmEndocrinologyLymphotoxinInternal medicinecardiovascular systembiology.proteinmedicinevascular smooth muscle cellsGene silencingBiology (General)ACTA2Biomedicines
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Impact of estrogens on atherosclerosis and bone in the apolipoprotein E-deficient mouse model.

2014

Objective The common inflammatory pathophysiology has nourished the hypothesis of a relationship between osteoporosis and cardiovascular disease. Estrogens are key agents in the modulation of both processes. We investigated whether induction of atherosclerosis affects bone and whether estrogens modulate both processes. Methods Female apolipoprotein E-deficient mice (a well-established model of atherogenesis) were ovariectomized or falsely operated and fed either standard diet or high-fat diet (HFD). Six animals were included in each of the four groups. To clarify mechanisms, we treated preosteoblastic MC3T3-E1 cells with mouse serum. Results Physiological levels of estrogens in falsely oper…

medicine.medical_specialtyBone densityApolipoprotein BOvariectomyOsteoporosisDiet High-FatBone resorptionMiceApolipoproteins EBone DensityTrabecular PatternInternal medicinemedicineAnimalsHumansBone ResorptionBone mineralbiologybusiness.industryObstetrics and GynecologyEstrogensmedicine.diseaseAtherosclerosisDisease Models AnimalEndocrinologymedicine.anatomical_structureOvariectomized ratbiology.proteinOsteoporosisCortical boneFemalebusinessMenopause (New York, N.Y.)
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Type 1 diabetic mellitus patients with increased atherosclerosis risk display decreased CDKN2A/2B/2BAS gene expression in leukocytes

2019

Background Type 1 diabetes mellitus (T1DM) patients display increased risk of cardiovascular disease (CVD) and are characterized by a diminished regulatory T (Treg) cell content or function. Previous studies have shown an association between decreased CDKN2A/2B/2BAS gene expression and enhanced CVD. In the present study the potential relationship between CDKN2A/2B/2BAS gene expression, immune cell dysfunction and increased cardiovascular risk in T1DM patients was explored. Methods A cross-sectional study was performed in 90 subjects divided into controls and T1DM patients. Circulating leukocyte subpopulations analysis by flow cytometry, expression studies on peripheral blood mononuclear cel…

Blood Glucose0301 basic medicineendocrine system diseasesCellular differentiationlcsh:Medicine0302 clinical medicineRisk FactorsRAR-related orphan receptor gammaimmune system diseasesLeukocytesIL-2 receptorDiabetisFOXP3Cell DifferentiationGeneral MedicineType 1 diabetes030220 oncology & carcinogenesisCytokinesRNA Long Noncodingmedicine.symptomAdultmedicine.medical_specialtyCD14T cellsInflammationPeripheral blood mononuclear cellGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesInternal medicinemedicineHumansRNA MessengerCyclin-Dependent Kinase Inhibitor p16Cyclin-Dependent Kinase Inhibitor p15Glycated HemoglobinInflammationType 1 diabetesbusiness.industryResearchlcsh:RAtherosclerosismedicine.diseaseCardiovascular riskDiabetes Mellitus Type 1030104 developmental biologyEndocrinologyGene Expression RegulationCase-Control StudiesbusinessJournal of Translational Medicine
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Srebf2 Locus Overexpression Reduces Body Weight, Total Cholesterol and Glucose Levels in Mice Fed with Two Different Diets

2020

Macronutrients represent risk factors for hyperlipidemia or diabetes. Lipid alterations and type 2 diabetes mellitus are global health problems. Overexpression of sterol regulatory element-binding factor (Srebf2) in transgenic animals is linked to elevated cholesterol levels and diabetes development. We investigated the impact of increased Srebf2 locus expression and the effects of control and high-fat, high-sucrose (HFHS) diets on body weight, glucose and lipid metabolisms in transgenic mice (S-mice). Wild type (WT) and S-mice were fed with both diets for 16 weeks. Plasma glucose, insulin and lipids were assessed (n = 25). Immunostainings were performed in liver, pancreas and fat (N = 10).…

0301 basic medicinemedicine.medical_specialtymedicine.medical_treatment030209 endocrinology & metabolismlcsh:TX341-641Carbohydrate metabolismtransgenic miceArticle03 medical and health scienceschemistry.chemical_compound0302 clinical medicineInternal medicineAdipocyteDiabetes mellitusHyperlipidemialipid metabolismmedicinecarbohydrate metabolismhigh-sucrose diethigh-fatNutrition and DieteticsCholesterolInsulinType 2 Diabetes MellituscholesterolLipid metabolismmedicine.diseaselipoproteins030104 developmental biologyEndocrinologychemistrylipids (amino acids peptides and proteins)atherosclerosissterol regulatory element-binding protein 2 (SREBP-2)lcsh:Nutrition. Foods and food supplyFood ScienceNutrients
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Changes in CDKN2A/2B expression associate with T-cell phenotype modulation in atherosclerosis and type 2 diabetes mellitus.

2018

Previous studies indicate a role of CDKN2A/2B/2BAS genes in atherosclerosis and type 2 diabetes mellitus (T2DM). Progression of these diseases is accompanied by T-cell imbalance and chronic inflammation. Our main objective was to investigate a potential association between CDKN2A/2B/2BAS gene expression and T cell phenotype in T2DM and coronary artery disease (CAD) in humans, and to explore the therapeutic potential of these genes to restore immune cell homeostasis and disease progression. Reduced mRNA levels of CDKN2A (p16Ink4a), CDKN2B (p15Ink4b), and CDKN2BAS were observed in human T2DM and T2DM-CAD subjects compared with controls. Protein levels of p16Ink4a and p15Ink4b were also dimini…

0301 basic medicineMalemedicine.medical_specialtyendocrine system diseasesMice Knockout ApoECD3T cellCD14Inflammation03 medical and health sciencesMice0302 clinical medicinePhysiology (medical)Internal medicineNeointimamedicineAnimalsHumansIL-2 receptorInterleukin-7 receptorneoplasmsbiologybusiness.industryGenes p16Biochemistry (medical)CDKN2BASPublic Health Environmental and Occupational HealthType 2 Diabetes MellitusGeneral MedicineAtherosclerosis030104 developmental biologyEndocrinologymedicine.anatomical_structureDiabetes Mellitus Type 2030220 oncology & carcinogenesisbiology.proteinLeukocytes Mononuclearmedicine.symptombusinessTranslational research : the journal of laboratory and clinical medicine
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Deficient p27 Phosphorylation at Serine 10 Increases Macrophage Foam Cell Formation and Aggravates Atherosclerosis Through a Proliferation-Independen…

2011

OBJECTIVE: Genetic ablation of the growth suppressor p27(Kip1) (p27) in the mouse aggravates atherosclerosis coinciding with enhanced arterial cell proliferation. However, it is unknown whether molecular mechanisms that limit p27's protective function contribute to atherosclerosis development and whether p27 exerts proliferation-independent activities in the arterial wall. This study aims to provide insight into both questions by investigating the role in atherosclerosis of p27 phosphorylation at serine 10 (p27-phospho-Ser10), a major posttranslational modification of this protein. METHODS AND RESULTS: Immunoblotting studies revealed a marked reduction in p27-phospho-Ser10 in atheroscleroti…

Malerho GTP-Binding ProteinsRHOAMoesinMiceApolipoproteins ERadixinSerinemedicineAnimalsHumansProtein phosphorylationPhosphorylationProtein kinase ACell ProliferationFoam cellMice Knockoutrho-Associated KinasesbiologyArteriesAtherosclerosismedicine.diseaseCell biologyMice Inbred C57BLDisease Models AnimalAtheromaCase-Control StudiesImmunologyDisease Progressionbiology.proteinPhosphorylationFemalerhoA GTP-Binding ProteinCardiology and Cardiovascular MedicineCyclin-Dependent Kinase Inhibitor p27Foam CellsSignal TransductionArteriosclerosis, Thrombosis, and Vascular Biology
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MOESM1 of Type 1 diabetic mellitus patients with increased atherosclerosis risk display decreased CDKN2A/2B/2BAS gene expression in leukocytes

2019

Additional file 1. Tables for correlation studies: Table S1 and Table S2.

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