Search results for "Drug metabolism"

showing 10 items of 103 documents

Expression and differential localization of xenobiotic transporters in the rat olfactory neuro-epithelium.

2011

International audience; Transporters, such as multidrug resistance P-glycoproteins (MDR), multidrug resistance-related proteins (MRP) and organic anion transporters (OATs), are involved in xenobiotic metabolism, particularly the cellular uptake or efflux of xenobiotics (and endobiotics) or their metabolites. The olfactory epithelium is exposed to both inhaled xenobiotics and those coming from systemic circulation. This tissue has been described as a pathway for xenobiotics to the brain via olfactory perineural space. Thereby, olfactory transporters and xenobiotic metabolizing enzymes, dedicated to the inactivation and the elimination of xenobiotics, have been involved in the toxicological p…

Male[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH : Multidrug Resistance-Associated Proteinsp glycoproteinATP-binding cassette transporterMESH : HepatocytesReceptors OdorantMESH : P-GlycoproteinMESH: HepatocytesMESH : Lymphatic Vessels0302 clinical medicineMESH : Protein Transportugt2a1MESH: SmellMESH: Receptors OdorantMESH: AnimalsReceptorxenobiotic metabolizingmucosa0303 health sciencesMESH : Gene Expression RegulationMESH : RatsGeneral NeuroscienceMESH : OdorsMESH: Gene Expression RegulationSmellProtein Transportmedicine.anatomical_structureBiochemistryLivertransporterbarrierEffluxMultidrug Resistance-Associated ProteinsMESH: Multidrug Resistance-Associated ProteinsMESH: XenobioticsMESH: Protein TransportMESH: P-GlycoproteinMESH: RatsMESH: Lymphatic VesselsMESH : Maleodorant clearancebrainMESH : XenobioticsxenobioticBiologysystemMESH : Rats WistarOlfactory Receptor NeuronsXenobiotics03 medical and health sciencesbulbOlfactory Mucosamultidrug resistanceMESH : Receptors OdorantmedicineAnimalsATP Binding Cassette Transporter Subfamily B Member 1Rats WistardetoxificationMESH: Olfactory Mucosa030304 developmental biologyLymphatic VesselsMESH : Olfactory MucosaMESH: OdorsMESH : LiverTransporterMESH: Rats WistarMESH: Olfactory Receptor NeuronsEpitheliumMESH: MaleOlfactory bulbRatsenzymeGene Expression RegulationOdorantsHepatocytesMESH : SmellMESH : Olfactory Receptor NeuronsMESH : Animalsolfactory epitheliumOlfactory epitheliumperireceptor event[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryDrug metabolismMESH: Liver
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Endogenous nitric oxide is responsible for the early loss of P450 in cultured rat hepatocytes

1998

AbstractLoss of P450 during the early hours of monolayer formation is known to be the more serious limitation of primary cultured hepatocytes as an adequate model for the study of drug metabolism, toxicity and P450 induction. This study reports that endogenous nitric oxide (NO) formation is activated shortly after isolation by the classical collagenase-based liver perfusion methods. Both rapid P450 loss and aerobic mitochondrial energy metabolism impairment – with subsequent changes on glucose metabolism – are directly related to the high local generation of the radical at this stage. These effects can be reverted by the sole addition of NO biosynthesis inhibitors during liver perfusion and…

Malemedicine.medical_specialtyGlycogenolysisGlycogenolysisBiophysicsMitochondria LiverCarbohydrate metabolismHepatocyte primary cultureBiochemistryNitric oxideRats Sprague-DawleyP450 contentchemistry.chemical_compoundCytochrome P-450 Enzyme SystemBiosynthesisStructural BiologyInternal medicineGeneticsmedicineAnimalsGlycolysisMolecular BiologyCells CulturedAMPDrug metabolismAdenine NucleotidesNitric oxideCell BiologyLiver GlycogenRatsKineticsNG-Nitroarginine Methyl EsterEndocrinologyLiverchemistryToxicityMicrosomes LiverCollagenaseGlycolysisDrug metabolismmedicine.drugFEBS Letters
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Comparison of enzyme phenotypes in human bladder tumours and experimentally induced hyperplastic and neoplastic lesions of the rat urinary bladder. A…

1988

The expression of a number of enzymes involved in drug metabolism, membrane function etc. was compared in hyperplastic and neoplastic lesions of the rat bladder and in human bladder tumours. Transitional cell carcinomas (TCC) in both rat and Man were characterized by decreased alkaline phosphatase (ALP) and increased gamma-glutamyl transpeptidase (GGT), beta-glucuronidase (beta-G1), succinate dehydrogenase (SD) and glucose-6-phosphate dehydrogenase (G6PD) activities. In addition, binding for antibodies specific for different cytochrome P-450 species (UT50, PB3a, MC1, MC2) and microsomal epoxide hydrolase (mEHb) was elevated in both murine and human tumours. Comparison of the enzyme phenotyp…

Malemedicine.medical_specialtyPathologyUrinary BladderGlucosephosphate DehydrogenaseInternal medicinemedicineAnimalsHumansNeoplastic transformationEnzyme inducerGlucuronidaseCarcinoma Transitional CellUrinary bladderHyperplasiabiologyHistocytochemistrySuccinate dehydrogenasegamma-GlutamyltransferaseHyperplasiamedicine.diseaseAlkaline PhosphataseImmunohistochemistryRats Inbred F344RatsSuccinate DehydrogenaseEndocrinologymedicine.anatomical_structurePhenotypeUrinary Bladder NeoplasmsMicrosomal epoxide hydrolasebiology.proteinImmunohistochemistryDrug metabolismVirchows Archiv. B, Cell pathology including molecular pathology
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Reductive Drug Metabolism in Isolated Perfused Rat Liver under Restricted Oxygen Supply

1978

1. Hepatic azo and nitro reductase activities were studied in the perfused rat liver under normal and restricted oxygen supply. 2. Formation of sulphanilamide or p-aminobenzoic acid from neoprontosil or p-nitrobenzoic acid under aerobic conditions of liver perfusion was negligible, even at a reduced oxygen saturation of a pO2 of 300 mm Hg in the haemoglobinfree perfusion system. At a pO2 of 200 mm Hg reductase activities were almost maximal. 3. Conjugation of sulphanilamide (0-08 mM) was similar under aerobic and anaerobic conditions. Hepatic elimination of p-aminobenzoic acid (0-08 mM) showed an oxygen-dependent increase for 15 min after addition of substrate. 4. p-Nitroanisole demethylati…

Malemedicine.medical_specialtyTime FactorsHealth Toxicology and Mutagenesischemistry.chemical_elementIn Vitro TechniquesReductaseToxicologyBiochemistryOxygenInternal medicineRespirationmedicineAnimalsBilePyruvatesOxygen saturationDemethylationPharmacologyNitroanisole O-DemethylaseGeneral MedicineRatsOxygenEndocrinologyLiverPharmaceutical PreparationschemistryBiochemistryNitrobenzoatesLactatesAzo CompoundsOxidation-ReductionAnaerobic exercisePerfusionDrug metabolismXenobiotica
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Nanostructured Lipid Carriers-Containing Anticancer Compounds: Preparation, Characterization, and Cytotoxicity Studies

2007

This article describes the development of nanostructured lipid carriers (NLC) as colloidal carriers for two antitumor compounds that possess a remarkable antineoplastic activity. But their limited stability and low solubility in water could give a very low parenteral bioavailability. Results revealed an enhancement of the cytotoxicity effect of drug-loaded NLC on human prostate cancer (PC-3) and human hepatocellular carcinoma (HuH-6, HuH-7) cell lines with respect to that of both free drugs. Results of characterization studies strongly support the potential application of these drugs-loaded NLC as prolonged delivery systems for lipophilic drugs by several administration routes, in particula…

Materials scienceCell SurvivalDrug CompoundingPharmaceutical ScienceNanoparticleAntineoplastic AgentsPharmacologynanostructured lipid carrierHuman prostatehuman prostate carcinoma cellPlasmaCell Line TumorElectrochemistryHumansParticle SizeSolubilityCytotoxicityChromatography High Pressure LiquidDrug CarriersGeneral Medicineantitumor drugLipidsControlled releaseBioavailabilitySolubilityPlasma chemistryNanoparticleshuman hepatocellular carcinoma cellcontrolled releaseDrug metabolism
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Characterization of cryopreserved rat liver parenchymal cells by metabolism of diagnostic substrates and activities of related enzymes

1992

The metabolism of testosterone and benzo(a)pyrene (BaP) which is mediated by diverse enzymes was determined in cryopreserved rat liver parenchymal cells and compared with that found in freshly isolated cells. In addition, the activities of single xenobiotic-metabolizing enzymes were measured by using specific substrates. The cytochrome P450 (P450)-mediated total metabolic conversion of testosterone was reduced to 55% in cryopreserved cells. The metabolite profile, i.e. the formation of single metabolites compared with total metabolic conversion, was however unchanged when compared with freshly isolated cells. A concomitant reduction in the activities of the involved P450 isoenzymes can ther…

MetaboliteCell CountBiologyHydroxylationBiochemistryIsozymeCryopreservationchemistry.chemical_compoundCytochrome P-450 Enzyme SystemBenzo(a)pyreneAnimalsTestosteroneGlutathione TransferaseCryopreservationPharmacologyProteinsCytochrome P450Trypan BlueMetabolismArylsulfotransferaseRatsLiverchemistryBiochemistryCell culturebiology.proteinPercollDrug metabolismBiochemical Pharmacology
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Structure of Aspergillus niger epoxide hydrolase at 1.8 A resolution: implications for the structure and function of the mammalian microsomal class o…

2000

AbstractBackground: Epoxide hydrolases have important roles in the defense of cells against potentially harmful epoxides. Conversion of epoxides into less toxic and more easily excreted diols is a universally successful strategy. A number of microorganisms employ the same chemistry to process epoxides for use as carbon sources.Results: The X-ray structure of the epoxide hydrolase from Aspergillus niger was determined at 3.5 Å resolution using the multiwavelength anomalous dispersion (MAD) method, and then refined at 1.8 Å resolution. There is a dimer consisting of two 44 kDa subunits in the asymmetric unit. Each subunit consists of an α/β hydrolase fold, and a primarily helical lid over the…

Models MolecularProtein ConformationStereochemistryEpoxide10050 Institute of Pharmacology and Toxicology610 Medicine & healthEpoxide hydrolasechemistry.chemical_compoundProtein structure1315 Structural BiologyStructural BiologyMicrosomesHydrolase1312 Molecular BiologyAnimalsHumansBinding siteEpoxide hydrolaseMolecular BiologyX-ray crystallographyEpoxide HydrolasesMicrosomal epoxide hydrolasesDrug metabolismBinding SitesbiologyMADChemistryAspergillus nigerbiology.organism_classificationBiochemistryEpoxide HydrolasesMicrosome570 Life sciences; biologyAspergillus nigerDimerization
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Development of new Coumarin-based profluorescent substrates for human cytochrome P450 enzymes

2018

Cytochrome P450 (CYP) enzymes constitute an essential xenobiotic metabolizing system that regulates the elimination of lipophilic compounds from the body. Convenient and affordable assays for CYP enzymes are important for assessing these metabolic pathways.In this study, 10 novel profluorescent coumarin derivatives with various substitutions at carbons 3, 6 and 7 were developed. Molecular modeling indicated that 3-phenylcoumarin offers an excellent scaffold for the development of selective substrate compounds for various human CYP forms, as they could be metabolized to fluorescent 7-hydroxycoumarin derivatives. Oxidation of profluorescent coumarin derivatives to fluorescent metabolites by 1…

Models MolecularentsyymitoxidationHealth Toxicology and MutagenesisToxicology030226 pharmacology & pharmacyBiochemistrycoumarinFluorescence03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCytochrome P-450 Enzyme SystemCoumarinsCYPenzyme kineticsderivativeCytochrome P-450 Enzyme InhibitorsHumansheterocyclic compoundsEnzyme kineticskumariiniCYP2A6ta317Pharmacologychemistry.chemical_classificationBenzoflavonesbiologyChemistryCYP1A2fluoresenssiCytochrome P450substraatit (kemia)General MedicineCoumarindrug metabolismMolecular Docking SimulationMetabolic pathwayKineticsEnzymeBiochemistrylääkekemia030220 oncology & carcinogenesisInactivation Metabolicbiology.proteinMicrosomes LiverOxidation-ReductionDrug metabolism
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Modulation of biotransformation and elimination systems by BM-21, an aqueous ethanolic extract from Thalassia testudinum, and thalassiolin B on human…

2012

Abstract BM-21 is an extract obtained from Thalassia testudinum marine plant with pharmacological properties. The effects of BM-21 and thalassiolin B (TB), its main component, on enzyme and transport proteins involved in drug metabolism and excretion in human cultured hepatocytes were evaluated. Cells were exposed for 48 h to sub-cytotoxic concentrations of BM-21 or TB. Effects on P450 isoforms revealed significant reductions of CYP1A2, 3A4 and 2D6 activities (up to 56%, 66% and 44% inhibition, respectively) after exposition to BM-21, no changes on CYP2A6 and 2C9 activities. TB produced a concentration-dependent reduction of all P450 activities. In addition, a decrease in total UGT and UGT2…

Nutrition and DieteticsbiologyCYP3A4Nutrition. Foods and food supplyThalassiolin BCYP1A2PolyphenolsMedicine (miscellaneous)Cytochrome P450Cytochrome P450P-glycoproteinPharmacologyExcretionBiotransformationIn vivobiology.proteinThalassia testudinumTX341-641UDP-glucuronosyltransferasesCYP2A6Drug metabolismFood ScienceJournal of Functional Foods
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Die Bedeutung der Bindung von Pharmaka an Albumin und Erythrocyten eines Perfusionsmediums der isolierten Rattenleber

1971

The binding of lipophilic drugs to albumin and erythrocytes and its importance for the uptake of the drugs into the isolated rat liver were investigated. Promazine and chlorpromazine were taken as lipophilic drugs, which were compared in some experiments with 3,3′-dimethyl-4,4′-diacetyldiphenylbisguanylhydrazone (BG 60), a much more hydrophilic drug.

PharmacologyBiochemistryChemistryRat liverPharmacology toxicologyHydrophobic drugmedicineAlbuminGeneral MedicineChlorpromazineDrug metabolismmedicine.drugPromazineNaunyn-Schmiedebergs Archiv f�r Pharmakologie
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