Search results for "LIPIDS"

showing 10 items of 2228 documents

Atherogenic properties of enzymatically degraded LDL: selective induction of MCP-1 and cytotoxic effects on human macrophages.

1998

Abstract —The mechanisms underlying the selective accumulation of macrophages in early atherosclerotic lesions are poorly understood but are likely to be related to specific properties of altered low density lipoprotein (LDL) deposited in the subendothelium. Enzymatic, nonoxidative degradation of LDL converts the lipoprotein to a potentially atherogenic moiety, enzymatically altered LDL (E-LDL), which activates complement and is rapidly taken up by human macrophages via a scavenger receptor–dependent pathway. Immunohistological evidence indicates that E-LDL is present in an extracellular location in the early lesion. We report that E-LDL causes massive release of monocyte chemotactic prote…

ArteriosclerosisHydrolasesGene ExpressionNeuraminidaseBiologyCCL2Polymerase Chain Reactionchemistry.chemical_compoundExtracellularmedicineMacrophageHumansTrypsinInterleukin 8RNA MessengerCells CulturedChemokine CCL2Cell DeathMonocyteMacrophagesRNA-Directed DNA PolymeraseSterol EsteraseMolecular biologyLipoproteins LDLKineticsmedicine.anatomical_structureBiochemistrychemistryApoptosisLow-density lipoproteinlipids (amino acids peptides and proteins)Cardiology and Cardiovascular MedicineLipoproteinArteriosclerosis, thrombosis, and vascular biology
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Complement and atherogenesis: The unknown connection

1999

The question why low-density lipoprotein (LDL) stranded in the subendothelium of arteries should acquire the proinflammatory properties that initiate and sustain atherogenesis has puzzled researchers for decades. The most popular concept contends that oxidative processes are crucial because oxidized LDL (ox-LDL) produced in vitro has atherogenic properties and small amounts of it are found in atherosclerotic lesions. Recently, a possible role for vascular infections has also been considered because infectious agents, in particular Chlamydia pneumoniae, are sometimes present in the lesions. Here, evidence is summarized for a different concept of atherogenesis, which evolves from the fact tha…

ArteriosclerosisVascular diseaseInflammationGeneral MedicineChlamydia InfectionsChlamydophila pneumoniaeMacrophage ActivationBiologymedicine.diseaseProinflammatory cytokineLipoproteins LDLPathogenesischemistry.chemical_compoundImmune systemchemistryLow-density lipoproteinImmunologymedicineHumansMacrophagelipids (amino acids peptides and proteins)medicine.symptomComplement ActivationLipoproteinAnnals of Medicine
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Pharmacological blockade of the fatty acid amide hydrolase (FAAH) alters neural proliferation, apoptosis and gliosis in the rat hippocampus, hypothal…

2015

Endocannabinoids participate in the control of neurogenesis, neural cell death and gliosis. The pharmacological effect of the fatty acid amide hydrolase (FAAH) inhibitor URB597, which limits the endocannabinoid degradation, was investigated in the present study. Cell proliferation (phospho-H3(+) or BrdU(+) cells) of the main adult neurogenic zones as well as apoptosis (cleaved caspase-3(+)), astroglia (GFAP(+)), and microglia (Iba1(+) cells) were analyzed in the hippocampus, hypothalamus and striatum of rats intraperitoneally treated with URB597 (0.3 mg/kg/day) at one dose/4-days resting or 5 doses (1 dose/day). Repeated URB597 treatment increased the plasma levels of the N-acylethanolamine…

AstrocitosNeurobiologia del desenvolupamentAmidohidrolasasCannabinoid receptorCarbamatos:Chemicals and Drugs::Amino Acids Peptides and Proteins::Proteins::Intracellular Signaling Peptides and Proteins::Apoptosis Regulatory Proteins::Caspases [Medical Subject Headings]:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Differentiation::Neurogenesis [Medical Subject Headings]medicine.medical_treatment:Chemicals and Drugs::Carbohydrates::Monosaccharides::Hexoses::Glucose [Medical Subject Headings]Apoptosis:Phenomena and Processes::Physiological Phenomena::Body Constitution::Body Weights and Measures::Body Size::Body Weight [Medical Subject Headings]chemistry.chemical_compound:Chemicals and Drugs::Amino Acids Peptides and Proteins::Proteins::Membrane Proteins::Receptors Cell Surface::Receptors G-Protein-Coupled::Receptors Cannabinoid::Receptor Cannabinoid CB1 [Medical Subject Headings]0302 clinical medicine:Chemicals and Drugs::Organic Chemicals::Carboxylic Acids::Acids Acyclic::Carbamates [Medical Subject Headings]Fatty acid amide hydrolaseReceptor cannabinoide CB1:Organisms::Eukaryota::Animals [Medical Subject Headings]FAAHGliosishealth care economics and organizations:Chemicals and Drugs::Nucleic Acids Nucleotides and Nucleosides::Nucleosides::Deoxyribonucleosides::Deoxyuridine::Bromodeoxyuridine [Medical Subject Headings]:Chemicals and Drugs::Lipids::Glycerides::Triglycerides [Medical Subject Headings]Original Research0303 health sciencesNeurogenesisBenzamidas:Chemicals and Drugs::Polycyclic Compounds::Steroids::Cholestanes::Cholestenes::Cholesterol [Medical Subject Headings]Endocannabinoid systemEtanolaminas3. Good healthEndocannabinoides:Chemicals and Drugs::Lipids::Fatty Acids::Fatty Acids Unsaturated::Fatty Acids Monounsaturated::Oleic Acids [Medical Subject Headings]CannabinoidesMicroglíalipids (amino acids peptides and proteins)medicine.symptomColesterol:Chemicals and Drugs::Organic Chemicals::Hydrocarbons::Terpenes::Cannabinoids [Medical Subject Headings]:Chemicals and Drugs::Lipids::Fatty Acids::Palmitic Acids [Medical Subject Headings]psychological phenomena and processesProliferación celularmedicine.medical_specialtyCerebroNeurogenesiseducationBiologyBromodesoxiuridina:Anatomy::Nervous System::Neuroglia::Microglia [Medical Subject Headings]Triglicéridoslcsh:RC321-571Ácidos oléicosRatas03 medical and health sciencesCellular and Molecular NeuroscienceInternal medicineHipocampomedicineCaspasa 3:Anatomy::Nervous System::Central Nervous System::Brain::Limbic System::Hippocampus [Medical Subject Headings]:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Growth Processes::Cell Proliferation [Medical Subject Headings]lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry030304 developmental biologyPalmitoylethanolamide:Chemicals and Drugs::Chemical Actions and Uses::Pharmacologic Actions::Molecular Mechanisms of Pharmacological Action::Neurotransmitter Agents::Endocannabinoids [Medical Subject Headings]:Chemicals and Drugs::Enzymes and Coenzymes::Enzymes::Hydrolases::Amidohydrolases [Medical Subject Headings]Cannabinoids:Anatomy::Cells::Neuroglia::Astrocytes [Medical Subject Headings]Peso corporalEnergy metabolism:Anatomy::Nervous System::Central Nervous System::Brain [Medical Subject Headings]:Anatomy::Nervous System::Central Nervous System::Brain::Limbic System::Hypothalamus [Medical Subject Headings]URB597:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Death [Medical Subject Headings]:Diseases::Pathological Conditions Signs and Symptoms::Pathologic Processes::Gliosis [Medical Subject Headings]:Chemicals and Drugs::Organic Chemicals::Amines::Amino Alcohols::Ethanolamines [Medical Subject Headings]Muerte celular:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Death::Apoptosis [Medical Subject Headings]:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Rodentia::Muridae::Murinae::Rats [Medical Subject Headings]EndocrinologyURB597chemistryGliosisnervous systemGlucosaCannabinoidEnergy Metabolism:Chemicals and Drugs::Organic Chemicals::Amides::Benzamides [Medical Subject Headings]HipotálamoÁcidos palmíticos030217 neurology & neurosurgeryNeuroscienceFrontiers in Cellular Neuroscience
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Caractérisation des figures myéliniques associées à l'accumulation de lipides polaires induites par différents oxystérols cytotoxiques identifiés dan…

2006

Atherosclerosis is a complex and chronic arterial process which is characterized by a remodeling of the vascular wall, associated with inflammatory reactions, proliferation and cell death process, and with accumulation of oxidized lipids among which oxysterols (cholesterol oxidation products) which might play key roles in the initiation and development of atheromatous lesions. Our work performed on U937 and THP1 promonocytic cells, rat aorta embryonic A7R5 cells, and breast carcinoma MCF7 cells (caspase-3 deficient). Different oxysterols, present in large quantity in atheromatous lesions, were used: 7-cétocholestérol (7KC), 7Β-hydroxycholestérol, 25-hydroxycholestérol, cholestérol-5Α, 6Α-ep…

AthéroscléroseCell DeathApoptose[ SDV.BC ] Life Sciences [q-bio]/Cellular BiologyLipidesApoptosisOxystérolsAtherosclerosisLipidsPhospholipidosisPhospholipidose<br />Vitamine-ECaspase-2[ SDV.BBM.BC ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]Mort cellulaireVitamin E[SDV.BBM.BC] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM][SDV.BC] Life Sciences [q-bio]/Cellular Biology
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Modulation of dendritic cells and macrophages : implication in cancer and atherosclerosis

2010

During my thesis, I studied the cytotoxic function of dendritic cells (DC) from cancer patients and compared it to DC from healthy donors. Our results indicate that human monocyte-derived DC can acquire strong cytotoxic activity toward tumor cells after activation with low dose of LPS. The cytotoxic potential of DC derived from cancer patients was almost the same as the one generated from healthy donors. We identified the tumor cell killing mechanism which involves peroxynitrite release. After killing of cancer cells, DC are capable of engulfing dead tumor cell fragments and overexpress the costimulatory molecules necessary for T cell proliferation. A second study consisted in an analysis o…

Athérosclérose[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyCellules dendritiquesMacrophages[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyDentritic cellslipids (amino acids peptides and proteins)Atherosclerosis[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyCancer
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Invasive Observation by Atomic Force Microscope of a Langmuir-Blodgett Monolayer of Gramicidin

2002

The properties of gramicidin, a linear antibiotic polypeptide of 15 amino acids, have been studied at the air-water interface. Analysis of the pressure-area isotherm is not able to conclude about the conformational behavior of gramicidin in the monolayer. Langmuir-Blodgett deposition of gramicidin layers onto a mica substrate has been developed for atomic force microscopy (AFM) observations. At high pressure of deposition, the gramicidin monolayer is composed of dimers perpendicular to the surface. The possibility of removing the half upper part of this dimer monolayer with the AFM tip is more in favor of a structure of single-stranded helical dimers.

Atomic force microscopyDimertechnology industry and agricultureMedicine (miscellaneous)Langmuir–Blodgett filmchemistry.chemical_compoundCrystallographychemistryHigh pressureMonolayerpolycyclic compoundsGramicidinlipids (amino acids peptides and proteins)Mica substrateDeposition (law)Probe Microscopy
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Immunomodulatory role of statins in autoimmune disease: is there a role for human gamma delta T cells ?

2006

Immunomodulatory role of statins in autoimmune disease: is there a role for human γδT cells?

Autoimmune diseaseSTIMULATIONHistorybusiness.industryRECOGNITIONnutritional and metabolic diseasesmedicine.diseaseMETABOLITESComputer Science ApplicationsEducationDELTA T-CELLSImmunologyMedicinelipids (amino acids peptides and proteins)cardiovascular diseasesbusinessγδt cells
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Natural Triterpene Glycosides for Antibody Recognition

2016

Multiple sclerosis is an autoimmune disease that affects the central nervous system. The key role of the glycosylation in disease pathogenesis has been previously studied and the synthetic N-glucosylated peptide CSF114(Glc) proved its efficiency in autoantibody recognition in the sera of multiple sclerosis patients. Herein, pure natural triterpene glycosides containing different glycosyl moieties were isolated and tested in multiple sclerosis patientsʼ sera to better understand the role of glycosylation. They were selected taking into account the nature and complexity of their osidic part. Five triterpene glycosides were isolated from several plants with more than 95 % purity. The interacti…

Autoimmune diseasechemistry.chemical_classificationGlycosylationMultiple sclerosisAutoantibodyGlycosidemacromolecular substancesBiologymedicine.diseasecarbohydrates (lipids)chemistry.chemical_compoundAntigenTriterpenechemistryBiochemistryImmunologymedicinebiology.proteinAntibodybiomarkers • autoantibody recognition autoimmune disease multiple sclerosis triterpene glycosidesPlanta Medica Letters
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Duck Hepatitis B Virus Requires Cholesterol for Endosomal Escape during Virus Entry

2008

ABSTRACT The identity and functionality of biological membranes are determined by cooperative interaction between their lipid and protein constituents. Cholesterol is an important structural lipid that modulates fluidity of biological membranes favoring the formation of detergent-resistant microdomains. In the present study, we evaluated the functional role of cholesterol and lipid rafts for entry of hepatitis B viruses into hepatocytes. We show that the duck hepatitis B virus (DHBV) attaches predominantly to detergent-soluble domains on the plasma membrane. Cholesterol depletion from host membranes and thus disruption of rafts does not affect DHBV infection. In contrast, depletion of chole…

AvihepadnavirusbiologyvirusesImmunologyDuck hepatitis B virusBiological membraneEndosomesVirus Internalizationbiology.organism_classificationMicrobiologyVirologyVirusHepatitis B Virus DuckVirus-Cell InteractionsCholesterolViral envelopeHepadnaviridaeViral entryCell Line TumorVirologyInsect ScienceHepatocytesHumanslipids (amino acids peptides and proteins)Lipid raftJournal of Virology
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A new method of anomeric protection and activation based on the conversion of glycosyl azides into glycosyl fluorides

1993

Glycosyl azides provide reliable anomeric protection stable to conditions for hydrolytic removal of ester groups, for reductive opening or release of acetalic diol protection, for the introduction of ether-type protection, and for glycosylation processes. The utility of this anomeric protection is further enhanced as glycosyl azides may be converted into glycosyl fluorides, which can be activated for glycosylation reactions. To this end, glycosyl azides have been subjected to 1,3-dipolar cycloaddition with di-tert-butyl acetylenedicarboxylate. On treatment with hydrogen fluoride-pyridine complex the N-glycosyl triazole derivatives directly give glycosyl fluorides.

AzidesMagnetic Resonance Spectroscopyanimal structuresAnomerGlycosylationOptical RotationMolecular Sequence DataCarbohydrate synthesismacromolecular substancesBiochemistryKoenigs–Knorr reactionAnalytical ChemistryFluoridesStructure-Activity Relationshipchemistry.chemical_compoundCarbohydrate ConformationOrganic chemistryGlycosylGlycosidesGlycosyl donorMolecular StructureOrganic ChemistryChemical glycosylationGlycosyl acceptorGeneral Medicinecarbohydrates (lipids)Carbohydrate Sequencechemistrylipids (amino acids peptides and proteins)Carbohydrate Research
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