Search results for "Microsomes"

showing 10 items of 193 documents

Metabolism of coumarin by precision-cut calf liver slices and calf liver microsomes.

1995

1. The metabolism of 50 microM [3-14C]coumarin has been studied in precision-cut-calf liver slices. 2. The metabolism of 50 microM coumarin to 7-hydroxycoumarin has also been examined in calf, rat, Cynomolgus monkey and human liver microsomal preparations. 3. In precision-cut calf liver slices, [3-14C]coumarin was metabolized to various polar products and to metabolite(s) that bound covalently to calf liver slice proteins. The polar products included 7-hydroxycoumarin (which was extensively conjugated with D-glucuronic acid and/or sulphate), metabolites of the 3-hydroxylation pathway (mainly o-hydroxyphenylethanol and o-hydroxyphenylacetic acid), and unknown metabolites. 4. Coumarin 7-hydro…

MaleHealth Toxicology and MutagenesisMetaboliteIn Vitro TechniquesToxicologyBiochemistryRats Sprague-Dawleychemistry.chemical_compoundSpecies SpecificityCoumarinsmedicineAnimalsHumansPharmacologybiologyMethoxsalenReproducibility of ResultsGeneral MedicineMetabolismbiology.organism_classificationCoumarinEnzyme assayRatsMacaca fascicularischemistryMicrosomaBiochemistryLiverMicrosomebiology.proteinMicrosomes LiverCattleDrug metabolismmedicine.drugXenobiotica; the fate of foreign compounds in biological systems
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Inhibition of ethoxyresorufin deethylase activity by natural flavonoids in human and rat liver microsomes

1990

Several flavones and flavonols (chrysin, quercetin, luteolin, flavone and 7, 8-benzoflavone) were found to inhibit ethoxyresorufin deethylase (EROD) activity in human and rat liver microsomes. In man, molecules without hydroxyl groups are more powerful inhibitors than polyhydroxylated flavonoids (7, 8-benzoflavone greater than flavone greater than chrysin greater than luteolin greater than quercetin greater than morin). In rat, chrysin was the strongest inhibitor and the less effective were morin and 7,8-benzoflavone. For all molecules human microsomes were more sensitive than rat microsomes. The most important difference concerned 7,8-benzoflavone which was 10,000-fold more potent in man.

MaleHealth Toxicology and Mutagenesis[SDV]Life Sciences [q-bio]MorinToxicology030226 pharmacology & pharmacyFlavonesStructure-Activity Relationship03 medical and health scienceschemistry.chemical_compound0302 clinical medicineFlavonolsSpecies SpecificityCytochrome P-450 CYP1A1AnimalsCytochrome P-450 Enzyme InhibitorsHumansStructure–activity relationshipheterocyclic compoundsChrysinComputingMilieux_MISCELLANEOUS030304 developmental biologyFlavonoidschemistry.chemical_classification0303 health sciencesPublic Health Environmental and Occupational HealthRats Inbred StrainsGeneral ChemistryRats3. Good healthchemistryBiochemistryChemistry (miscellaneous)Microsomes LiverMicrosomeRATOxidoreductasesQuercetinLuteolinFood Science
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A novel haemoprotein induced by isosafrole pretreatment in the rat

1978

Abstract Sodium dodecyl sulphate-polyacrylamide gel electrophoresis has been used to demonstrate that pretreatment of rats with isosafrole results in the formation of a novel species of cytochrome P-450 (mol. wt. 54,000) quite distinct from that induced by phenobarbitone pretreatment (mol. wt. 50,000) or 3-methylcholanthrene (mol. wt. 58,000).

MaleHemeproteinCytochromeSodiumBiophysicschemistry.chemical_elementDioxolesBiochemistrychemistry.chemical_compoundCytochrome P-450 Enzyme SystemIsomerismSafroleMoleAnimalsMolecular BiologyGel electrophoresisChromatographybiologyChemistrySpectrum AnalysisCell BiologyRatsMolecular WeightBiochemistryIsosafroleEnzyme InductionPhenobarbitalMicrosomes Liverbiology.proteinApoproteinsMethylcholanthreneBiochemical and Biophysical Research Communications
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Irreversible protein binding of acrylonitrile.

1981

1. After i.p. injection of [2,3-14C]acrylonitrile to rats, a significant portion of radioactivity becomes irreversibly attached to proteins of liver, lung, spleen and other tissues. 2. When rat liver microsomes were incubated with [2,3-14C]acrylonitrile, a time-dependent irreversible binding of radioactivity occurred to microsomal proteins. This binding was not dependent on NADPH. A high extent of binding to heat-inactivated microsomes indicated that no enzymic metabolic step was involved. 3. The irreversible binding of [2,3-14C]acrylonitrile to rat liver microsomal protein in vitro was inhibited by thiols (cysteine, glutathione, mercaptoethanol). The greatest inhibitory potency was display…

MaleHot TemperatureHealth Toxicology and MutagenesisSpleenPlasma protein bindingToxicologyBiochemistryDithiocarbchemistry.chemical_compoundNitrilesmedicineAnimalsSulfhydryl CompoundsPharmacologyAcrylonitrileChemistryGeneral MedicineGlutathioneIn vitroRatsmedicine.anatomical_structureBiochemistryLiverMicrosomeMicrosomes LiverAcrylonitrileDitiocarbSpleenCysteineProtein BindingXenobiotica; the fate of foreign compounds in biological systems
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On the spectral intermediate at 440 nm formed during mixed function substrate oxidation.

1974

Abstract The spectral shoulder formed at 440 nm in microsomes oxidising hexobarbital and other drugs has been investigated and some of its properties characterised. Hexobarbital, pentobarbital, ethylmorphine and barbital produce this shoulder, while acetanilide, aniline, desmethylimipramine, imipramine, metyrapone and SKF 525-A do not. The formation of the 440 nm shoulder depends on the presence of NADPH and oxygen and is reduced in size when NADH is also present. At saturating substrate concentrations the size of the 440 nm shoulder is correlated to the cytochrome P-450 content. The hexobarbital induced shoulder can be inhibited by drug metabolism inhibitors such as metyrapone, imipramine …

MaleImipramineCytochromeStereochemistrychemistry.chemical_elementBarbitalIn Vitro TechniquesPhotochemistryBiochemistryOxygenMixed Function Oxygenaseschemistry.chemical_compoundAnilineOxygen ConsumptionCytochrome P-450 Enzyme SystemmedicineAnimalsAcetanilidePentobarbitalPharmacologyAniline CompoundsbiologyProadifenDesipramineSubstrate (chemistry)MetyraponeEthylmorphineNADRatsKineticsHexobarbitalchemistryMorphinansBarbituratesbiology.proteinMicrosomes LiverAcetanilidesSpectrophotometry UltravioletOxidoreductasesOxidation-ReductionNADPmedicine.drugProtein BindingBiochemical pharmacology
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Isolation of a high spin form of cytochrome P-450 induced in rat liver by 3-methylcholanthrene.

1983

Abstract A form of cytochrome P-450 (P-450 MC1) has been isolated from the livers of 3-methylcholanthrene-treated rats. The molecular weight is 54,500 and the heme iron is in the high spin configuration which clearly differenciates this form from the other major cytochrome induced by 3-methylcholanthrene (P-450 MC2). Whilst MC2 actively dealkylated 7-ethoxycoumarin and 7-ethoxyresorufin, MC1 was only active with 7-ethoxyresorufin. Ouchterlony immunodiffusion analysis and ELISA showed that anti MC1 and anti MC2 reacted with both MC1 and MC2 but preferentially with the homologous antigen. Both anti MC1 and MC2 cross-reacted strongly with microsomes from 3-methylcholanthrene, Aroclor 1254 and …

MaleImmunodiffusionCytochromeBiophysicsEnzyme-Linked Immunosorbent AssayBiochemistrychemistry.chemical_compoundCytochrome P-450 Enzyme SystemmedicineAnimalsInducerMolecular BiologybiologyRats Inbred StrainsCell BiologyOuchterlony double immunodiffusionRatsImmunodiffusionchemistryBiochemistryIsosafroleEnzyme InductionMethylcholanthreneMicrosomebiology.proteinMicrosomes LiverPhenobarbitalmedicine.drugMethylcholanthreneBiochemical and biophysical research communications
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Studies on the Biosynthesis of Microsomal Membrane Proteins. Site of Synthesis and Mode of Insertion of Cytochrome b5, Cytochrome b5 Reductase, Cytoc…

1982

The site of synthesis and mechanism of insertion into membranes of several microsomal polypeptides was studied using translation system programmed in vitro with polysomes or with mRNA extracted from free and membrane-bound rat liver polysomes. Primary translation products of cytochrome b5, NADH: cytochrome b5 oxidoreductase, NADPH: cytochrome P-450 oxidoreductase and epoxide hydrolase were isolated by specific immunoprecipitation and compared with the mature proteins. The following observations were made: 1 While cytochrome b5 and NADH: cytochrome b5 oxidoreductase are synthesized in free polysomes, NADPH: cytochrome P-450 oxidoreductase and epoxide hydrolase are made in membrane-bound poly…

MaleImmunodiffusionTime FactorsCytochromeBiochemistryElectron TransportCytochrome b5AnimalsCytochrome P450 family 1 member A1Epoxide hydrolaseCytochrome ReductasesCytochrome b5 reductaseNADPH-Ferrihemoprotein ReductaseEpoxide HydrolasesbiologyCytochrome bMembrane ProteinsCytochrome P450 reductaseRats Inbred StrainsMolecular biologyRatsCytochromes b5BiochemistryEnzyme InductionPhenobarbitalProtein BiosynthesisCoenzyme Q – cytochrome c reductaseMicrosomes Liverbiology.proteinCytochromesRabbitsCytochrome-B(5) ReductaseEuropean Journal of Biochemistry
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Endogenous role of epoxide-hydratase. Development of a steroid epoxide-hydratase assay and properties of the enzyme.

1979

A highly sensitive and rapid radiometric assay for the determination of specific epoxide hydratase activity with a steroid epoxide (16α, 17α-epoxy-1,3,5(10)-estratrien-3-ol, ‘estroxide’) has been developed. The unreacted substrate was separated from the product 1,3,5(10)-estratrien-3,16β,17α-triol by extraction into light petroleum. The product was then extracted into ethyl acetate and measured by scintillation spectrometry. Radiochromatography established that after subtraction of the blank the entire radioactivity measured in the ethyl acetate phase resulted from the product 1,3,5(10)-estratrien-3,16,17-triol, whilst high performance liquid chromatography with the four possible isomers of…

MaleImmunodiffusionmedicine.medical_treatmentEthyl acetateEpoxideBiochemistryHigh-performance liquid chromatographySteroidchemistry.chemical_compoundSex FactorsStyrene oxideMicrosomesTestismedicineAnimalsTissue DistributionChromatography High Pressure LiquidEpoxide HydrolasesChromatographyOvaryRatsKineticschemistryBiochemistryMicrosomeMicrosomes LiverPyreneSpecific activityFemaleChromatography Thin LayerEuropean journal of biochemistry
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Hepatic metabolism of diallyl disulfide in rat and man

2003

International audience; 1. The metabolism of diallyl disulphide was investigated in vitro with rat and human liver cell subfractions and ex vivo with an isolated perfused rat liver. 2. Diallyl disulphide was oxidized to diallylthiosulphinate by rat liver microsomes with an apparent K-m = 0.86 +/- 0.1 mM and an apparent V-max = 0.47 +/- 0.12 nmol min(-1) mg(-1) protein (mean +/- SE). Both cytochrome P450 (CYP) and flavin-containing monooxygenases were involved, with CYP2B1/2 and CYP2E1 being the most active CYP enzymes. 3. In rat and man, microsomal oxidation of allylmethyl sulphide to allylmethyl sulphoxide and allylmethyl sulphone also occurred, although at a low rate. Diallyl disulphide w…

MaleLIVERHealth Toxicology and MutagenesisToxicologyBiochemistryGARLICchemistry.chemical_compoundDisulfides0303 health sciencesbiologyDADS030302 biochemistry & molecular biologyCytochrome P-450 CYP2E1General MedicineCYP2E1Middle Agedfoie3. Good healthEnzymesAllyl CompoundsPerfusionBiochemistryArea Under CurveMicrosomes LiverFemaleAryl Hydrocarbon HydroxylasesOxidation-Reductionailcomposé soufrexénobiotique[SDV.BID]Life Sciences [q-bio]/BiodiversityIn Vitro Techniques03 medical and health sciencesAnimalsHumansmétabolisme030304 developmental biologyAgedPharmacologySulfur CompoundsEX VIVOCytochrome P450SULFUR COMPOUNDMetabolismGlutathioneMonooxygenaseRatschemistryDADS;EX VIVO;SULFUR COMPOUND;XENOBIOTIC METABOLISM;GARLIC;LIVER;RATCytochrome P-450 CYP2B1Steroid HydroxylasesMicrosomebiology.proteinRATAllyl MercaptanXENOBIOTIC METABOLISMDrug metabolism
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Effects of typical inducers on olfactory xenobiotic-metabolizing enzyme, transporter, and transcription factor expression in rats.

2010

International audience; Several xenobiotic-metabolizing enzymes (XMEs) have been identified in the olfactory mucosa (OM) of mammals. However, the molecular mechanisms underlying the regulation of these enzymes have been little explored. In particular, information on the expression of the transcriptional factors in this tissue is quite limited. The aim of the present study was to examine the impact of five typical inducers, Aroclor 1254, 3-methylcholanthrene, dexamethasone, phenobarbital, and ethoxyquin, on the activities and mRNA expression of several XMEs in the OM and in the liver of rats. We also evaluated the effects of these treatments on the mRNA expression of transcription factors an…

MaleLIVERMESH : Transcription FactorsMESH: Microsomes Liver[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionPharmaceutical ScienceMESH : CytochromesMESH: Down-RegulationMESH: Membrane Transport ProteinsMESH : Down-RegulationCytosol0302 clinical medicineGlucocorticoid receptorMESH : Membrane Transport ProteinsMESH: CytosolMESH: Reverse Transcriptase Polymerase Chain ReactionGene expressionConstitutive androstane receptorMESH: Up-RegulationMESH: AnimalsReceptorMESH : Up-RegulationMESH: Cytochromes0303 health sciencesPregnane X receptorMESH : Metabolic Detoxication Phase IbiologyReverse Transcriptase Polymerase Chain ReactionMESH : RatsMESH : CytosolINDUCTIONMESH : Reverse Transcriptase Polymerase Chain ReactionMESH: Transcription FactorsUp-Regulation3. Good healthMESH : Microsomes LiverHYDROCARBON HYDROXYLASE-ACTIVITYmedicine.anatomical_structurePHASE-IBiochemistryMESH: Metabolic Detoxication Phase IIEnzyme InductionMicrosomes LiverMESH: Metabolic Detoxication Phase IMESH: XenobioticsMESH: Enzyme InductionMESH: RatsMESH : MaleDown-RegulationMESH : XenobioticsPHENOL SULFOTRANSFERASEMESH : Rats WistarXenobiotics03 medical and health sciencesOlfactory mucosaOlfactory MucosamedicineAnimalsRats WistarMESH: Olfactory MucosaTranscription factor030304 developmental biologyPharmacologyMESH : Olfactory MucosaIDENTIFICATIONRECEPTORMESH : Enzyme InductionMembrane Transport ProteinsMESH : Metabolic Detoxication Phase IIUDP-GLUCURONOSYLTRANSFERASEMESH: Rats WistarAryl hydrocarbon receptorORGANIC ANION TRANSPORTERMolecular biologyMetabolic Detoxication Phase IIMESH: MaleRatsNASAL-MUCOSAbiology.proteinCytochromesMetabolic Detoxication Phase IMESH : Animals[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryTranscription Factors
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