0000000000010544

AUTHOR

Charles Thomas

0000-0001-9998-6698

showing 8 related works from this author

Liver X Receptor Regulates Arachidonic Acid Distribution and Eicosanoid Release in Human Macrophages

2013

Objective— Liver X receptors (LXRs) are oxysterol-activated nuclear receptors that are highly expressed in macrophages and regulate lipid homeostasis and inflammation. Among putative LXR target genes, lysophosphatidylcholine acyltransferase 3 (LPCAT3) involved in the Lands cycle controls the fatty acid composition at the sn-2 position of glycerophospholipids and, therefore, the availability of fatty acids, such as arachidonic acid (AA), used for eicosanoid synthesis. The aim of our study was to determine whether LXRs could regulate the Lands cycle in human macrophages, to assess the consequences in terms of lipid composition and inflammatory response, and to work out the relative contribut…

InflammationBiologySensitivity and SpecificityDinoprostoneMonocyteschemistry.chemical_compoundDownregulation and upregulationmedicineHumansDimethyl SulfoxideRNA MessengerLiver X receptorReceptorCells CulturedLiver X ReceptorsInflammationArachidonic AcidMacrophagesLysophospholipid acyltransferase activity1-Acylglycerophosphocholine O-AcyltransferaseMicroarray AnalysisOrphan Nuclear ReceptorsUp-RegulationchemistryEicosanoidNuclear receptorBiochemistryEicosanoidslipids (amino acids peptides and proteins)Arachidonic acidmedicine.symptomCardiology and Cardiovascular MedicineArteriosclerosis, Thrombosis, and Vascular Biology
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High Plasma Concentration of Non-Esterified Polyunsaturated Fatty Acids Is a Specific Feature of Severe COVID-19 Pneumonia

2020

Background: The pathogenesis of severe COVID-19 is frequently associated with an uncontrolled inflammatory response. Severe forms of COVID-19 appear to be more frequent in obese patients, but an association with metabolic disorders is not established. Here, we focused on lipoprotein metabolism in patients hospitalized for severe pneumonia, depending on COVID-19 status. Methods: Thirty-four non-COVID-19 and 27 COVID-19 patients with severe pneumonia were enrolled. Most of them required intensive care. Plasma lipid levels, lipoprotein metabolism, and clinical and biological features were assessed. Findings: Despite similar initial metabolic comorbidities and respiratory severity, COVID-19 pat…

chemistry.chemical_classificationApolipoprotein Emedicine.medical_specialtybusiness.industrymedicine.diseaseSepsisPneumoniaNEFAchemistryInternal medicineIntensive caremedicinebusinessBody mass indexLipoproteinPolyunsaturated fatty acidSSRN Electronic Journal
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Inhibition of colon cancer growth by docosahexaenoic acid involves autocrine production of TNFα

2016

IF 7.932; International audience; The omega-3 polyunsaturated fatty acid docosahexaenoic acid (DHA) has anti-inflammatory and anti-cancer properties. Among pro-inflammatory mediators, tumor necrosis factor a (TNF alpha) plays a paradoxical role in cancer biology with induction of cancer cell death or survival depending on the cellular context. The objective of the study was to evaluate the role of TNFa in DHA-mediated tumor growth inhibition and colon cancer cell death. The treatment of human colorectal cancer cells, HCT-116 and HCT-8 cells, with DHA triggered apoptosis in autocrine TNF alpha-dependent manner. We demonstrated that DHA-induced increased content of TNF alpha mRNA occurred thr…

0301 basic medicineCancer ResearchTumoricidal ActionApoptosis[ SDV.CAN ] Life Sciences [q-bio]/CancerMice[ SDV.GEN.GH ] Life Sciences [q-bio]/Genetics/Human geneticsForkhead Box Protein O3Cell cycle3. Good healthCell biologyGene Expression Regulation NeoplasticAutocrine CommunicationColonic NeoplasmsTumor-Necrosis-FactorTumor necrosis factor alphaProgrammed cell deathDocosahexaenoic AcidsHuman Colorectal-CancerGene-Expression[SDV.CAN]Life Sciences [q-bio]/Cancer[SDV.BC]Life Sciences [q-bio]/Cellular BiologyBiology03 medical and health sciencesGrowth factor receptorLipid-MetabolismGeneticsmedicineAnimalsHumans[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyCell-DeathPolyunsaturated Fatty-AcidsAutocrine signallingMolecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyActivated Protein-KinaseTumor Necrosis Factor-alpha[ SDV.BC ] Life Sciences [q-bio]/Cellular BiologyInduced ApoptosisCancerHCT116 Cellsmedicine.diseaseXenograft Model Antitumor AssaysMicroRNAs030104 developmental biology[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsApoptosisCancer cellCancer researchPrevents Breast-Cancer
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Muricholic Acids Promote Resistance to Hypercholesterolemia in Cholesterol-Fed Mice

2021

International audience; Background and aims: Hypercholesterolemia is a major risk factor for atherosclerosis and cardiovascular diseases. Although resistant to hypercholesterolemia, the mouse is a prominent model in cardiovascular research. To assess the contribution of bile acids to this protective phenotype, we explored the impact of a 2-week-long dietary cholesterol overload on cholesterol and bile acid metabolism in mice. Methods: Bile acid, oxysterol, and cholesterol metabolism and transport were assessed by quantitative real-time PCR, western blotting, GC-MS/MS, or enzymatic assays in the liver, the gut, the kidney, as well as in the feces, the blood, and the urine. Results: Plasma tr…

Male0301 basic medicineMuricholic acidDrug Evaluation PreclinicalReceptors Cytoplasmic and NuclearCholesterol Dietarychemistry.chemical_compound0302 clinical medicineBiology (General)Spectroscopy2. Zero hungerKidney[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyBile acidChemistryGeneral Medicine3. Good healthComputer Science ApplicationsBlotChemistrymedicine.anatomical_structureCholesterolFXR030220 oncology & carcinogenesislipids (amino acids peptides and proteins)LXRmedicine.medical_specialtyOxysterolQH301-705.5medicine.drug_classHypercholesterolemiaArticleCatalysisBile Acids and SaltsInorganic Chemistry03 medical and health sciencesIn vivoInternal medicinemedicine[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyPhysical and Theoretical ChemistryLiver X receptorQD1-999Molecular BiologyCholesterolOrganic ChemistryCholic AcidsBile acidsMice Inbred C57BL030104 developmental biologyEndocrinology[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Phenolic extract from oleaster (Olea europaea var. Sylvestris) leaves reduces colon cancer growth and induces caspase-dependent apoptosis in colon ca…

2017

Erratum inCorrection: Phenolic extract from oleaster (Olea europaea var. Sylvestris) leaves reduces colon cancer growth and induces caspase-dependent apoptosis in colon cancer cells via the mitochondrial apoptotic pathway. [PLoS One. 2017]; International audience; Dietary polyphenols, derived from natural products, have received a great interest for their chemopreventive properties against cancer. In this study, we investigated the effects of phenolic extract of the oleaster leaves (PEOL) on tumor growth in mouse model and on cell death in colon cancer cell lines. We assessed the effect of oleaster leaf infusion on HCT116 (human colon cancer cell line) xenograft growth in athymic nude mice.…

0301 basic medicineLeavesCarcinoma Cellslcsh:MedicineApoptosisPlant ScienceMitochondrionEndoplasmic ReticulumBiochemistry[ SDV.CAN ] Life Sciences [q-bio]/Cancer0302 clinical medicineMedicine and Health SciencesMitochondrial calcium uptakeDiseaselcsh:ScienceEnergy-Producing OrganellesStainingchemistry.chemical_classificationSecretory PathwayMultidisciplinaryCell DeathPlant AnatomyCytochrome cCell StainingAnimal ModelsMitochondriaOlive Leaf ExtractChemistryOncologyExperimental Organism SystemsBiochemistryCell Processes030220 oncology & carcinogenesisPhysical SciencesCellular Structures and OrganellesResearch ArticleProgrammed cell deathActivationMouse Models[SDV.CAN]Life Sciences [q-bio]/CancerBioenergeticsBiologyResearch and Analysis MethodsColorectal-CancerCaspase-Dependent Apoptosis03 medical and health sciencesModel OrganismsPhenolsCytochrome-CColorectal CancerReactive oxygen speciesP53Cell growthProteinlcsh:RChemical CompoundsBiology and Life SciencesCancers and NeoplasmsPolyphenolsCell BiologyMolecular biology030104 developmental biologychemistrySpecimen Preparation and TreatmentApoptosisbiology.proteinCalciumlcsh:QPLoS ONE
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Liver X receptor activation promotes polyunsaturated fatty acid synthesis in macrophages : relevance in the context of atherosclerosis

2015

Objective— Liver X receptors (LXRs) modulate cholesterol and fatty acid homeostasis as well as inflammation. This study aims to decipher the role of LXRs in the regulation of polyunsaturated fatty acid (PUFA) synthesis in macrophages in the context of atherosclerosis. Approach and Results— Transcriptomic analysis in human monocytes and macrophages was used to identify putative LXR target genes among enzymes involved in PUFA biosynthesis. In parallel, the consequences of LXR activation or LXR invalidation on PUFA synthesis and distribution were determined. Finally, we investigated the impact of LXR activation on PUFA metabolism in vivo in apolipoprotein E–deficient mice. mRNA levels of acyl…

Context (language use)Biologydigestive systemchemistry.chemical_compoundMicearachidonic acidAnimalsHumansFatty acid homeostasisReceptorLiver X receptor[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyLiver X Receptorschemistry.chemical_classificationCholesterolFatty acidfood and beveragesArteriesAtherosclerosisOrphan Nuclear ReceptorsmacrophagesBiochemistrychemistryn-3 polyunsaturated fatty acidFatty Acids UnsaturatedArachidonic acidlipids (amino acids peptides and proteins)Cardiology and Cardiovascular MedicineSterol Regulatory Element Binding Protein 1Polyunsaturated fatty acidFoam Cellsliver X receptor
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Activation of liver x receptors promotes polyunsaturated fatty acid synthesis and eicosanoid secretion in human macrophages

2014

chemistry.chemical_classificationchemistryBiochemistryEicosanoid secretionCardiology and Cardiovascular MedicineLiver X receptorPolyunsaturated fatty acidAtherosclerosis
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164P Effect of ELOVL5 expression on breast cancer development

2021

Breast cancerOncologyExpression (architecture)business.industryCancer researchMedicineHematologybusinessmedicine.diseaseAnnals of Oncology
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