0000000000064023

AUTHOR

Joseph Vamecq

showing 11 related works from this author

Genetic-dependency of peroxisomal cell functions - emerging aspects

2003

This paper reviews aspects concerning the genetic regulation of the expression of the well studied peroxisomal genes including those of fatty acid beta-oxidation enzymes; acyl-CoA oxidase, multifunctional enzyme and thiolase from different tissues and species. An important statement is PPARalpha, which is now long known to be in rodents the key nuclear receptor orchestrating liver peroxisome proliferation and enhanced peroxisomal beta-oxidation, does not appear to control so strongly in man the expression of genes involved in peroxisomal fatty acid beta-oxidation related enzymes. In this respect, the present review strengthens among others the emerging concept that, in the humans, the main …

chemistry.chemical_classificationThiolaseFatty AcidsAdaptation BiologicalReceptors Cytoplasmic and NuclearPeroxisome ProliferationPeroxisome proliferator-activated receptorReviewCell BiologyPeroxisomeBiologyLipid MetabolismchemistryNuclear receptorBiochemistryPeroxisomesAnimalsHumansMolecular MedicineGeneFunction (biology)BiogenesisSignal TransductionTranscription FactorsJournal of Cellular and Molecular Medicine
researchProduct

Argan oil prevents down-regulation induced by endotoxin on liver fatty acid oxidation and gluconeogenesis and on peroxisome proliferator-activated re…

2015

In patients with sepsis, liver metabolism and its capacity to provide other organs with energetic substrates are impaired. This and many other pathophysiological changes seen in human patients are reproduced in mice injected with purified endotoxin (lipopolysaccharide, LPS). In the present study, down-regulation of genes involved in hepatic fatty acid oxidation (FAOx) and gluconeogenesis in mice exposed to LPS was challenged by nutritional intervention with Argan oil. Mice given a standard chow supplemented or not with either 6% (w/w) Argan oil (AO) or 6% (w/w) olive oil (OO) prior to exposure to LPS were explored for liver gene expressions assessed by mRNA transcript levels and/or enzyme a…

Peroxisome proliferator-activated receptor gammamedicine.medical_specialtyOO olive oilResearch paper[SDV]Life Sciences [q-bio]Peroxisome proliferator-activated receptorBiologyBiochemistryNuclear receptor 30lcsh:BiochemistryEstrogen-related receptorEstrogen-related receptor alphaInternal medicineACADS acyl CoA dehydrogenase short-chainACADL acyl CoA dehydrogenase long-chainmedicinePGC-1α peroxisome proliferator-activated receptor γ coactivator-1αlcsh:QD415-436ReceptorBeta oxidationHNF-4α hepatic nuclear factor-4αchemistry.chemical_classificationACADM acyl CoA dehydrogenase medium-chainPPARα peroxisome proliferator-activated receptor αERRα estrogen related receptor α[ SDV ] Life Sciences [q-bio]PEPCK phospoenolpyruvate carboxykinaseGluconeogenesisBeta-oxidationGlut4 glucose transporter 4[SDV] Life Sciences [q-bio]G6PH glucose-6-phosphataseEndocrinologyGlut2 glucose transporter 2chemistryNuclear receptorArgan oilAO Argan oilNuclear receptorACOX1 acyl-CoA oxidase 1CoactivatorLPS lipopolysaccharidePeroxisome proliferator-activated receptor alpha
researchProduct

Medical significance of peroxisome proliferator-activated receptors.

1999

Peroxisome proliferator-activated receptors (PPAR) were discovered in 1990, ending 25 years of uncertainty about the molecular mechanisms of peroxisome proliferation. Subsequently, PPARs have improved our understanding of adipocyte differentiation. But there is more to PPARs than solving a puzzle about an organelle (the peroxisome) long considered an oddity, and their medical significance goes beyond obesity too. Enhanced PPAR type alpha expression protects against cardiovascular disorders though the role of enhanced PPARgamma expression seems less favourable. PPAR mechanisms, mainly via induction of more differentiated cell phenotypes, protect against some cancers. The differentiation of m…

medicine.medical_specialtyCellular differentiationPeroxisome ProliferationPeroxisome proliferator-activated receptorReceptors Cytoplasmic and NuclearBiologyMicrobodiesInternal medicineNeoplasmsmedicineAdipocytesAnimalsHumansReceptorRegulation of gene expressionchemistry.chemical_classificationResearchFatty AcidsCell DifferentiationGeneral MedicinePeroxisomeEndocrinologychemistryNuclear receptorGene Expression RegulationCardiovascular DiseasesCancer researchPeroxisome proliferator-activated receptor alphaOxidation-ReductionTranscription FactorsLancet (London, England)
researchProduct

The human peroxisome in health and disease: The story of an oddity becoming a vital organelle

2013

Abstract Since the first report by Rhodin in 1954, our knowledge on mammalian microbodies/peroxisomes has known several periods. An initial two decades period (1954–1973) has contributed to the biochemical individualisation of peroxisomes as a new class of subcellular organelles (de Duve, 1965). The corresponding research period failed to define a clear role of mammalian peroxisomes in vital functions and intermediary metabolism, explaining why feeling that peroxisomes might be in the human cell oddities has prevailed during several decades. The period standing from 1973 to nowadays has progressively removed this cell oddity view of peroxisomes by highlighting vital function and metabolic r…

Peroxisome Proliferator-Activated ReceptorsDiseaseBiologyCell FractionationMicrobodiesBiochemistryPeroxisomal DisordersOrganellePeroxisomal disorderCentrifugation Density GradientPeroxisomesmedicineAnimalsHumansMicrobodyZellweger SyndromeOrganelle envelopeFatty AcidsGeneral MedicinePeroxisomeLipid Metabolismmedicine.diseaseCell biologyBiochemistryNuclear receptorMetabolic Networks and PathwaysFunction (biology)Biochimie
researchProduct

Nopal Cactus (Opuntia ficus-indica) as a Source of Bioactive Compounds for Nutrition, Health and Disease

2014

Opuntia ficus-indica, commonly referred to as prickly pear or nopal cactus, is a dicotyledonous angiosperm plant. It belongs to the Cactaceae family and is characterized by its remarkable adaptation to arid and semi-arid climates in tropical and subtropical regions of the globe. In the last decade, compelling evidence for the nutritional and health benefit potential of this cactus has been provided by academic scientists and private companies. Notably, its rich composition in polyphenols, vitamins, polyunsaturated fatty acids and amino acids has been highlighted through the use of a large panel of extraction methods. The identified natural cactus compounds and derivatives were shown to be e…

Opuntia ficus-indicaOpuntia ficusAnti-Inflammatory AgentsPharmaceutical ScienceDiseaseReviewHealth benefitsBiologyAntioxidantsAnalytical Chemistrylcsh:QD241-441lcsh:Organic chemistryDrug DiscoveryBotanycell signalingAnimalsHumansPhysical and Theoretical Chemistryanti-inflammatorychemistry.chemical_classificationPEARPlant ExtractsOrganic ChemistryOpuntiaPolyphenolschemistryChemistry (miscellaneous)CactusMolecular MedicineExtraction methodsDrug Screening Assays AntitumorPolyunsaturated fatty acidMolecules
researchProduct

Hepatic steatosis and peroxisomal fatty acid beta-oxidation.

2012

Three subhepatocellular compartments concur for fatty acids degradation including ω-oxidation in endoplasmic reticulum and β-oxidation in both mitochondria and peroxisomes. Deficits affecting the peroxisomal physiology may be associated with multiple metabolic disturbances. Nowadays, a growing body of evidence underlines the key role of peroxisomal β-oxidation in the sensing of lipid metabolism through the production/degradation of some essential metabolites. Lessons from several mice models strengthen the link between fatty acid β-oxidation in peroxisomes and the nuclear hormone receptor Peroxisome Proliferator-Activated Receptor (PPAR)-α with an additional level of coregualtor complexity,…

Pharmacologychemistry.chemical_classificationClinical BiochemistryFatty AcidsLiver NeoplasmsFatty acidPeroxisome proliferator-activated receptorLipid metabolismPeroxisomeBiologyFatty acid beta-oxidationmedicine.diseaseFatty LiverchemistryBiochemistrymedicinePeroxisomesAnimalsHumansPPAR alphaPeroxisome proliferator-activated receptor alphaSteatosisFlux (metabolism)Oxidation-ReductionCurrent drug metabolism
researchProduct

Evolutionary aspects of peroxisomes as cell organelles, and of genes encoding peroxisomal proteins

2001

Peroxisomes are present in most eukaryotic cell types, and have different enzymatic content and metabolic functions throughout the life scale. The endosymbiotic origin of these DNA-devoid organelles is supported by evolutionary data concerning genes encoding not only most peroxisomal proteins, but also several transcriptional factors regulating their expression such as peroxisome proliferator-activated receptors.

OrganellesNuclear ProteinsReceptors Cytoplasmic and NuclearCell BiologyGeneral MedicinePlantsMitochondrionPeroxisomeBiologyMicrobodiesCell biologyEvolution MolecularGene Expression RegulationBiochemistryPhylogeneticsOrganellePeroxisomesAnimalsHumansMicrobodyReceptorTranscription factorGeneTranscription FactorsBiology of the Cell
researchProduct

Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism.

1997

Peroxisome proliferation (PP) in mammalian cells, first described 30 years ago, represents a fascinating field of modern research. Major improvements made in its understanding were obtained through basic advances that have opened up new areas in cell biology, biochemistry and genetics. A decade after the first report on PP, a new metabolic pathway (peroxisomal beta-oxidation) and its inducibility by peroxisome proliferators were discovered. More recently, a new type of nuclear receptor, the peroxisome proliferator-activated receptor (PPAR), has been described. The first PPAR was discovered in 1990. Since then, many other PPARs have been characterized. This original class of nuclear receptor…

Transcriptional ActivationPeroxisome ProliferationPeroxisome proliferator-activated receptorReceptors Cytoplasmic and NuclearBiologyLigandsBiochemistryMicrobodiesGene Expression Regulation EnzymologicMicrosomesAnimalsHumansReceptorHypolipidemic Agentschemistry.chemical_classificationFatty AcidsLipid metabolismGeneral MedicinePeroxisomeLipid MetabolismCell biologyMitochondriaBiochemistrychemistryNuclear receptorLiverlipids (amino acids peptides and proteins)Peroxisome proliferator-activated receptor alphaAcyl-CoA OxidaseSignal transductionOxidoreductasesOxidation-ReductionSignal TransductionTranscription FactorsBiochimie
researchProduct

Biological activities of Schottenol and Spinasterol, two natural phytosterols present in argan oil and in cactus pear seed oil, on murine miroglial B…

2014

International audience; The objective of this study was to evaluate the biological activities of the major phytosterols present in argan oil (AO) and in cactus seed oil (CSO) in BV2 microglial cells. Accordingly, we first determined the sterol composition of AO and CSO, showing the presence of Schottenol and Spinasterol as major sterols in AO. While in CSO, in addition to these two sterols, we found mainly another sterol, the Sitosterol. The chemical synthesis of Schottenol and Spinasterol was performed. Our results showed that these two phytosterols, as well as sterol extracts from AO or CSO, are not toxic to microglial BV2 cells. However, treatments by these phytosterols impact the mitoch…

Argan oilABCA1Biochemistrychemistry.chemical_compoundMice0302 clinical medicineSchottenolBV2 cellspolycyclic compoundsCactus oilATP Binding Cassette Transporter Subfamily G Member 1Liver X ReceptorsMembrane Potential Mitochondrial0303 health sciencesbiologyOpuntiafood and beveragesPhytosterolsOrphan Nuclear ReceptorsSterolsBiochemistryABCG1030220 oncology & carcinogenesisSeeds[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]lipids (amino acids peptides and proteins)LXRMicrogliaATP Binding Cassette Transporter 1food.ingredientABCG1LipoproteinsBiophysicsStigmasterol[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Ficus indicaCell Line03 medical and health sciencesfoodAnimalsPlant OilsLiver X receptorMolecular BiologySpinasterol030304 developmental biologyCholesterolCell BiologySitosterolsSterolSpinasterolchemistryNuclear receptorGene Expression RegulationArgan oilABCA1biology.proteinATP-Binding Cassette Transporters
researchProduct

Modulation of peroxisomes abundance by argan oil and lipopolysaccharides in acyl-CoA oxidase 1-deficient fibroblasts

2013

Pseudo-neonatal adrenoleukodystrophy (P-NALD) is a neurodegenerative disorder caused by acyl-CoA oxidase 1 (ACOX1) deficiency with subsequent impairment of peroxisomal fatty acid β-oxidation, accumulation of very long chain fatty acids (VLCFAs) and strong reduction in peroxisome abundance. Increase in peroxisome number has been previously suggested to improve peroxisomal disorders, and in this perspective, the present work was aimed at exploring whether modulation of peroxisomes abundance could be achieved in P-NALD fibroblasts. Here we showed that treatment with the natural Argan oil induced peroxisome proliferation in P-NALD fibroblasts. This induction was independent on activations of bo…

food.ingredientChemistryArgan oilPeroxisome ProliferationPeroxisomemedicine.diseaseCell biologyfoodPeroxisomal disordermedicineAcyl-CoA oxidaseACOX1AdrenoleukodystrophyPeroxisome proliferator-activated receptor alphaHealth
researchProduct

Protection in a model of liver injury is parallel to energy mobilization capacity under distinct nutritional status

2019

International audience; Objective: Dietary and energetic restrictions are endowed with protection against experimental injuries. However, a drop in cell energetic status under a critical threshold may prevent protection, as previously observed for livers isolated from rat donors undergoing 18-h fasting versus feeding. The aim of this study was to further explore, in the latter model, links between nutritional status, energy availability, and protection through lengthening of rat fasting to 24 h and withdrawal of energy sources from perfusions.Methods: Energy-free perfused ex vivo livers from fed, 18-h-fasted, and 24-h-fasted rats were studied during 135 min for cytolysis (potassium, asparta…

0301 basic medicinemedicine.medical_specialtyEndocrinology Diabetes and Metabolism[SDV]Life Sciences [q-bio]Nutritional Status030209 endocrinology & metabolismCaspase 303 medical and health scienceschemistry.chemical_compound0302 clinical medicineLactate dehydrogenaseInternal medicineAutophagymedicineAnimalsOrgan protection2. Zero hungerLiver injury030109 nutrition & dieteticsNutrition and DieteticsLiver injury modelGlycogenLiver cytolysisAutophagyEnergy mobilizationFastingSciences bio-médicales et agricolesProtective Factorsmedicine.diseaseLC3IIRats[SDV] Life Sciences [q-bio]PerfusionCytolysisDisease Models AnimalEndocrinologychemistryLiverApoptosisChemical and Drug Induced Liver InjuryEnergy sourceEnergy Metabolism
researchProduct