Search results for " adipose tissue"

showing 10 items of 89 documents

Tejido adiposo epicárdico, adiponectina y leptina: Una fuente potencial de riesgo cardiovascular en Enfermedad renal crónica

2020

The importance of cardiometabolic factors in the inception and progression of atherosclerotic cardiovascular disease is increasingly being recognized. Beyond diabetes mellitus and metabolic syndrome, other factors may be responsible in patients with chronic kidney disease (CKD) for the high prevalence of cardiovascular disease, which is estimated to be 5- to 20-fold higher than in the general population. Although undefined uremic toxins are often blamed for part of the increased risk, visceral adipose tissue, and in particular epicardial adipose tissue (EAT), have been the focus of intense research in the past two decades. In fact, several lines of evidence suggest their involvement in athe…

LeptinPopulationAdipokineAdipose tissue030209 endocrinology & metabolismReview030204 cardiovascular system & hematologyBioinformaticsleptinCatalysislcsh:ChemistryInorganic Chemistry03 medical and health sciences0302 clinical medicinecardiovascular diseaseDiabetes mellitusmedicineHumansRenal Insufficiency ChronicPhysical and Theoretical Chemistryeducationlcsh:QH301-705.5Molecular BiologySpectroscopyeducation.field_of_studyadiponectinAdiponectinbusiness.industryLeptinOrganic ChemistryGeneral MedicineEpicardial Adipose Tissueepicardial adipose tissuemedicine.diseaseCardiovascular diseaseComputer Science ApplicationsAdipose Tissuelcsh:Biology (General)lcsh:QD1-999Cardiovascular DiseasesAdiponectinMetabolic syndromebusinessPericardiumKidney disease
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Nutritional supplementation with trans-10, cis-12-conjugated linoleic acid induces inflammation of white adipose tissue.

2006

Conjugated linoleic acids (CLAs) are conjugated dienoic isomers of linoleic acid. Many people supplement their diets with CLAs to attempt weight loss, and the trans-10,cis-12 isomer (t10,c12-CLA) of CLA reduces adiposity in animal models and humans. However, CLA treatment in mice causes insulin resistance that has been attributed to the lipoatrophic state, which is associated with hyperinsulinemia and hepatic steatosis. Here, we investigated the effect of t10,c12-CLA on adipose tissue inflammation, another factor promoting insulin resistance. We confirmed that t10,c12-CLA daily gavage performed in mice reduces white adipose tissue (WAT) mass and adiponectin and leptin serum levels and provo…

Leptinmedicine.medical_specialtyEndocrinology Diabetes and MetabolismConjugated linoleic acidAdipose Tissue WhiteAdipose tissueInflammationEnzyme-Linked Immunosorbent AssayWhite adipose tissueBiologychemistry.chemical_compoundMiceInsulin resistanceInternal medicine3T3-L1 CellsHyperinsulinismInternal MedicinemedicineHyperinsulinemiaAnimalsLinoleic Acids ConjugatedResistinInflammationintegumentary systemAdiponectinInterleukin-6Reverse Transcriptase Polymerase Chain ReactionTumor Necrosis Factor-alphaLeptinMacrophagesNF-kappa Bfood and beveragesmedicine.diseaseImmunohistochemistryMice Inbred C57BLPPAR gammaEndocrinologychemistryDietary Supplementslipids (amino acids peptides and proteins)FemaleAdiponectinmedicine.symptomInsulin ResistanceDiabetes
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Immune Cell Toll-like Receptor 4 Mediates the Development of Obesity- and Endotoxemia-Associated Adipose Tissue Fibrosis

2014

International audience; Adipose tissue fibrosis development blocks adipocyte hypertrophy and favors ectopic lipid accumulation. Here, we show that adipose tissue fibrosis is associated with obesity and insulin resistance in humans and mice. Kinetic studies in C3H mice fed a high-fat diet show activation of macrophages and progression of fibrosis along with adipocyte metabolic dysfunction and death. Adipose tissue fibrosis is attenuated by macrophage depletion. Impairment of Toll-like receptor 4 signaling protects mice from obesity-induced fibrosis. The presence of a functional Toll-like receptor 4 on adipose tissue hematopoietic cells is necessary for the initiation of adipose tissue fibros…

LipopolysaccharidesMESH: Signal TransductionMESH: InflammationMESH : Toll-Like Receptor 4Adipose tissueMESH : AdipocytesMESH : LipopolysaccharidesMicechemistry.chemical_compoundFibrosisAdipocyteAdipocytes[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyMESH: ObesityMESH: Animalslcsh:QH301-705.5Mice Inbred C3HToll-like receptorMESH : Diet High-FatMESH: Toll-Like Receptor 43. Good healthMESH: Insulin ResistanceAdipose TissueMESH: FibrosisMESH : Fibrosis[SDV.IMM]Life Sciences [q-bio]/ImmunologyMESH : ObesityMESH : Insulin ResistanceMESH: Adipose TissueSignal Transductionmedicine.medical_specialty[SDV.IMM] Life Sciences [q-bio]/ImmunologyAdipose tissue macrophagesBiologyDiet High-FatMESH : Adipose TissueGeneral Biochemistry Genetics and Molecular BiologyImmune systemMESH : Mice Inbred C3HInternal medicineMESH : MicemedicineAnimalsHumansObesityMESH: Mice Inbred C3HMESH: MiceMESH: AdipocytesInflammationMESH : Signal TransductionMESH : InflammationMESH: HumansMESH : EndotoxemiaMESH : Humans3T3-L1medicine.diseaseFibrosisMESH : Disease Models AnimalEndotoxemiaToll-Like Receptor 4Disease Models AnimalMESH: Diet High-FatEndocrinologylcsh:Biology (General)chemistryMESH: EndotoxemiaMESH : AnimalsInsulin ResistanceMESH: Disease Models AnimalMESH: LipopolysaccharidesAdipocyte hypertrophyCell Reports
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Extracellular vesicles do not mediate the anti-inflammatory actions of mouse-derived adipose tissue mesenchymal stem cells secretome

2021

Este artículo se encuentra disponible en la siguiente URL: https://www.mdpi.com/1422-0067/22/3/1375 Este artículo pertenece al número especial "The Role of Mesenchymal Stem Cells on Inflammatory and Fibrotic Diseases". Adipose tissue represents an abundant source of mesenchymal stem cells (MSC) for therapeutic purposes. Previous studies have demonstrated the anti-inflammatory potential of adipose tissue-derived MSC (ASC). Extracellular vesicles (EV) present in the conditioned medium (CM) have been shown to mediate the cytoprotective effects of human ASC secretome. Nevertheless, the role of EV in the anti-inflammatory effects of mouse-derived ASC is not known. The current study has investiga…

LipopolysaccharidesMaleChemokineLipopolysaccharideCélulas madre - Uso terapéutico.Adipose tissueInflammationmacrophageArticleCatalysisNitric oxideStem cells - Therapeutic use.lcsh:ChemistryInorganic ChemistryMicechemistry.chemical_compoundmedicineAnimalsMacrophageInflamación - Tratamiento.mesenchymal stem cells secretomePhysical and Theoretical ChemistryMacrophages.Receptorlcsh:QH301-705.5Molecular BiologyCells CulturedSpectroscopybiologyChemistryInflammation - Treatment.MacrophagesOrganic ChemistryMesenchymal stem cellmouse-derived adipose tissueMesenchymal Stem CellsGeneral MedicineAdipose tissues - Therapeutic use.Computer Science ApplicationsCell biologylcsh:Biology (General)lcsh:QD1-999inflammationMacrófagos.biology.proteinTejido adiposo - Uso terapéutico.medicine.symptomextracellular vesicles
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The neural feedback loop between the brain and adipose tissues

2009

Communication également publiée dans le livre "Adipose tissue development: from animal models to clinical conditions" (ISBN 978-3-8055-9450-9) de C. Levy-Marchal et L. Pénicaud (eds); There are more and more data supporting the importance of nervous regulation of both white and brown adipose tissue mass. This short paper will review the different physiological parameters which are regulated such as metabolism (lipolysis and thermogeneis), secretory activity (leptin and other adipokines) but also to plasticity of adipose tissues (proliferation differentiation and apoptosis). The sensory innervation of white adipose issue and its putative role will be also described. Altogether these results …

MESH: Feedback Physiological[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionPhysiologicalAdipokineAdipose tissueWhite adipose tissueBiologyAutonomic Nervous SystemMESH : Adipose TissueEnergy homeostasisMESH : Autonomic Nervous SystemFeedbackMESH: Autonomic Nervous System[ SDV.NEU.SC ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesMESH: BrainBrown adipose tissuemedicineLipolysisAnimalsHumansMESH: AnimalsComputingMilieux_MISCELLANEOUSFeedback PhysiologicalMESH: HumansLeptinMESH : HumansMESH: Energy MetabolismBrain[SDV.NEU.SC]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesMESH : Feedback PhysiologicalNeurosecretory SystemsCell biologyMESH : Energy MetabolismAutonomic nervous systemmedicine.anatomical_structureMESH : BrainAdipose TissueMESH: Neurosecretory SystemsMESH : AnimalsEnergy Metabolism[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Neurosecretory Systems[SDV.NEU.SC] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Cognitive SciencesMESH: Adipose Tissue
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Semicarbazide-sensitive amine oxidase/vascular adhesion protein-1 deficiency reduces leukocyte infiltration into adipose tissue and favors fat deposi…

2009

1525-2191 (Electronic) Journal Article; Obesity is associated with low-grade inflammation and leukocyte infiltration in white adipose tissue (WAT) and is linked to diabetic complications. Semicarbazide-sensitive amine oxidase, also known as vascular adhesion protein-1 (SSAO/VAP-1), is a membrane protein that is highly expressed in adipocytes and is also present on the endothelial cell surface where it is involved in leukocyte extravasation. We studied fat deposition and leukocyte infiltration in WAT of mice with a null mutation in the amine oxidase copper-containing-3 (AOC3) gene encoding SSAO/VAP-1. Both epididymal and inguinal WATs were larger in 6-month-old AOC3-KO males than in age-matc…

MESH: SemicarbazidesAOC3Obesity/geneticsAdipose tissueMESH: Flow CytometryWhite adipose tissueInbred C57BLMESH: Mice KnockoutTransgenicMiceLeukocytesMESH: ObesityMESH: AnimalsMice KnockoutAmine oxidase (copper-containing)food and beveragesNatural killer T cellFlow CytometryLeukocyte extravasationSemicarbazidesCell Adhesion Molecules/*deficiency/*geneticsAdipose TissueMESH: Cell Adhesion MoleculesLeukocytes/*physiologyAmine Oxidase (Copper-Containing)medicine.symptomInfiltration (medical)MESH: Adipose Tissuemedicine.medical_specialtyMESH: Mice TransgenicKnockoutMice TransgenicInflammation[SDV.BC]Life Sciences [q-bio]/Cellular BiologyBiologyMESH: Monoamine OxidasePathology and Forensic MedicineMESH: LeukocytesMonoamine Oxidase/*deficiencyMESH: Mice Inbred C57BLInternal medicinemedicineAnimalsHumansObesityMonoamine OxidaseMESH: Mice[SDV.BC] Life Sciences [q-bio]/Cellular BiologyMESH: HumansAmine Oxidase (Copper-Containing)/*deficiency/*geneticsmedicine.diseaseAdipose Tissue/pathology/*physiologyMice Inbred C57BLEndocrinologyImmunologyMESH: Amine Oxidase (Copper-Containing)Semicarbazides/*pharmacologyCell Adhesion MoleculesRegular Articles
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Extranodal extension of lymph node metastasis influences recurrence in prostate cancer: a systematic review and meta-analysis

2017

AbstractThe extranodal extension (ENE) of nodal metastasis involves the extension of neoplastic cells through the lymph node capsule into the perinodal adipose tissue. This morphological feature has recently been indicated as an important prognostic factor in various cancer types, but its role in prostate cancer is still unclear. We aimed to clarify it, performing the first meta-analysis on this issue, comparing prognostic parameters in surgically treated, node-positive prostate cancer patients with (ENE+) vs. without (ENE−) ENE. Data were summarized using risk ratios (RRs) for number of deaths/recurrences and hazard ratios (HRs), with 95% confidence intervals (CI), for the time-dependent r…

Male0301 basic medicineBiochemical recurrenceOncologymedicine.medical_specialtyPathologyScienceprostate cancer he extranodal extension (ENE) perinodal adipose tissuenot knownArticle03 medical and health sciencesProstate cancer0302 clinical medicineInternal medicineJournal ArticleOdds RatioHumansMedicineperinodal adipose tissueNeoplasms Adipose TissueAgedProportional Hazards ModelsMultidisciplinarybusiness.industryProportional hazards modelQHazard ratioRProstateProstatic NeoplasmsCancerOdds ratioMiddle Agedprostate cancerPrognosismedicine.disease3. Good health030104 developmental biologyLymphatic Metastasis030220 oncology & carcinogenesisRelative riskhe extranodal extension (ENE)MedicineProstate surgeryLymph NodesNeoplasm Recurrence LocalbusinessScientific Reports
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Metabolic Inflammation-Associated IL-17A Causes Non-alcoholic Steatohepatitis and Hepatocellular Carcinoma

2016

Obesity increases hepatocellular carcinoma (HCC) risks via unknown mediators. We report that hepatic unconventional prefoldin RPB5 interactor (URI) couples nutrient surpluses to inflammation and non-alcoholic steatohepatitis (NASH), a common cause of HCC. URI-induced DNA damage in hepatocytes triggers inflammation via T helper 17 (Th17) lymphocytes and interleukin 17A (IL-17A). This induces white adipose tissue neutrophil infiltration mediating insulin resistance (IR) and fatty acid release, stored in liver as triglycerides, causing NASH. NASH and subsequently HCC are prevented by pharmacological suppression of Th17 cell differentiation, IL-17A blocking antibodies, and genetic ablation of t…

Male0301 basic medicineCancer ResearchCarcinoma HepatocellularInflammationWhite adipose tissueDiet High-FatMice03 medical and health sciencesNon-alcoholic Fatty Liver DiseasemedicineAnimalsHumansUnconventional prefoldin RPB5 interactorbiologyInterleukin-17Liver NeoplasmsFatty liverIntracellular Signaling Peptides and ProteinsCell Biologymedicine.diseasedigestive system diseasesGene Expression Regulation NeoplasticRepressor Proteins030104 developmental biologyNeutrophil InfiltrationOncologyHepatocellular carcinomaImmunologybiology.proteinTh17 CellsInterleukin 17SteatosisSteatohepatitismedicine.symptomDNA DamageCancer Cell
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The LepR-mediated leptin transport across brain barriers controls food reward

2018

Objective Leptin is a key hormone in the control of appetite and body weight. Predominantly produced by white adipose tissue, it acts on the brain to inhibit homeostatic feeding and food reward. Leptin has free access to circumventricular organs, such as the median eminence, but entry into other brain centers is restricted by the blood–brain and blood–CSF barriers. So far, it is unknown for which of its central effects leptin has to penetrate brain barriers. In addition, the mechanisms mediating the transport across barriers are unclear although high expression in brain barriers suggests an important role of the leptin receptor (LepR). Methods We selectively deleted LepR in brain endothelia…

Male0301 basic medicineLeptinHFD high-fat dietEndothelial cellsWhite adipose tissueCSF cerebrospinal fluidMice0302 clinical medicineCPP conditioned place preferenceBBB blood–brain barrierCells Culturedmedia_commonLeptindigestive oral and skin physiologyi.p. intraperitonealmedicine.anatomical_structureLepRBlood-Brain BarrierBlood–brain barrier; Endothelial cells; LepR; Leptin; Obesity; RewardMedian eminenceqPCR quantitative polymerase chain reactionReceptors LeptinOriginal ArticleChoroid plexusmedicine.medical_specialtylcsh:Internal medicinemedia_common.quotation_subjectHyperphagiaBiologyBlood–brain barrierVTA ventral tegmental areaBC bottle choice testCapillary PermeabilityBlood–brain barrierARC arcuate nucleus03 medical and health sciencesPBS phosphate buffered salineRewardInternal medicinemedicineAnimalsObesitylcsh:RC31-1245Molecular BiologyCircumventricular organsBlood-Nerve BarrierLeptin receptorNCD normal chow dietAppetiteCell Biology030104 developmental biologyEndocrinologyLepR leptin receptorChoroid PlexusBSA bovine serum albuminPFA paraformaldehyde030217 neurology & neurosurgeryDAPI 4′6-diamidino-2-phenylindoleMolecular Metabolism
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Quantification of epicardial adipose tissue in coronary calcium score and CT coronary angiography image data sets: comparison of attenuation values, …

2016

The aim of the study was to compare epicardial adipose tissue (EAT) characteristics assessed with coronary calcium score (CS) and CT coronary angiography (CTCA) image data sets.In 76 patients (mean age 59 ± 13 years) who underwent CS and CTCA owing to suspected coronary artery disease (CAD), EAT was quantified in terms of density (Hounsfield units), thickness and volume. The EAT volume was extracted with a semi-automatic software.A moderate correlation was found between EAT density in CS and CTCA image data sets (-100 ± 19 HU vs -70 ± 24 HU; p  0.05, r = 0.55). The distribution of EAT was not symmetrical with a maximal thickness at the right atrioventricular groove (14.2 ± 5.3 mm in CS, 15.…

MaleCoronary angiographyComputed Tomography AngiographyAdipose tissueCoronary Artery Disease030204 cardiovascular system & hematologyCoronary AngiographySensitivity and Specificity030218 nuclear medicine & medical imagingCoronary artery disease03 medical and health sciencesImaging Three-Dimensional0302 clinical medicineHounsfield scalemedicineHumansRadiology Nuclear Medicine and imagingVascular CalcificationAdiposityComputed tomography angiographyFull Papermedicine.diagnostic_testbusiness.industryReproducibility of ResultsMean ageGeneral MedicineMiddle Agedmedicine.diseaseCoronary Calcium ScoreAdipose Tissueepicardial adipose tissue CT coronary angiographyEpicardial adipose tissueRadiographic Image Interpretation Computer-AssistedFemaleSettore MED/36 - Diagnostica Per Immagini E RadioterapiabusinessNuclear medicinePericardiumAlgorithmsThe British Journal of Radiology
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