Search results for "Drug metabolism"

showing 10 items of 103 documents

Cryopreserved primary hepatocytes as a constantly available in vitro model for the evaluation of human and animal drug metabolism and enzyme inductio…

2000

The use of primary hepatocytes is now well established for both studies of drug metabolism and enzyme induction. Cryopreservation of primary hepatocytes decreases the need for fresh liver tissue. This is especially important for research with human hepatocytes because availability of human liver tissue is limited. In this review, we summarize our research on optimization and validation of cryopreservation techniques. The critical elements for successful cryopreservation of hepatocytes are (1) the freezing protocol, (2) the concentration of the cryoprotectant [10% dimethyl-sulfoxide (DMSO)], (3) slow addition and removal of DMSO, (4) carbogen equilibration during isolation of hepatocytes and…

CryoprotectantLiver cytologyBiologyCryopreservationMiceDogsmedicineCytochrome P-450 CYP1A1AnimalsHumansPharmacology (medical)General Pharmacology Toxicology and PharmaceuticsEnzyme inducerEpoxide hydrolaseCryopreservationRatsmedicine.anatomical_structureBiochemistryLiverPharmaceutical PreparationsHepatocyteEnzyme Inductionbiology.proteinPercollDrug metabolismNADPDrug metabolism reviews
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Inhibition of Efavirenz Metabolism by Sertraline and Nortriptyline and Their Effect on Efavirenz Plasma Concentrations.

2015

ABSTRACT Between 22 and 45% of HIV-positive subjects are likely to report symptoms of depression. Considering this background, a potential pharmacokinetic interaction between the nonnucleoside reverse transcriptase inhibitor efavirenz (EFV) and two antidepressants, sertraline (SRT) and nortriptyline (NT), was studied. Rats were administered EFV alone or together with the antidepressants, and changes in the plasma levels and pharmacokinetic parameters of EFV were analyzed. Additional in vitro experiments with rat and human hepatic microsomes were carried out to evaluate the inhibitory effect of SRT and NT on EFV metabolism by determining the formation rate of the major EFV metabolite (8-OH-E…

CyclopropanesMalemedicine.medical_specialtyEfavirenzAnti-HIV AgentsMetaboliteNortriptylinePharmacology030226 pharmacology & pharmacy03 medical and health scienceschemistry.chemical_compound0302 clinical medicinePharmacokineticsIn vivoInternal medicineSertralinemedicineAnimalsHumansPharmacology (medical)Drug Interactions030212 general & internal medicineRats WistarIC50PharmacologyChemistryAntidepressive AgentsBenzoxazinesInfectious DiseasesEndocrinologyAlkynesMicrosomeMicrosomes LiverReverse Transcriptase InhibitorsNortriptylinehuman activitiesDrug metabolismmedicine.drugAntimicrobial agents and chemotherapy
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Coordinated induction of drug transporters and phase I and II metabolism in human liver slices

2008

Although regulation of phase I drug metabolism in human liver is relatively well studied, the regulation of phase II enzymes and of drug transporters is incompletely characterized. Therefore, we used human liver slices to investigate the PXR, CAR and AhR-mediated induction of drug transporters and phase I and II metabolic enzymes. Precision-cut human liver slices were incubated for 5 or 24 h with prototypical inducers: phenobarbital (PB) (50 mu M) for CAR, beta-naphthoflavone (BNF) (25 mu M) for AhR, and rifampicin (RIF) (10 mu M) for PXR, and gene expression of the phase I enzymes CYP1A1, 1A2, 3A4, 3A5, 2136, 2A6, the phase II enzymes UGT1A1 and 1A6, and the transporters MRP2, MDR1, BSEP, …

DIFFERENTIAL REGULATIONQUANTITATIVE RT-PCRRAT-LIVERGene ExpressionPharmaceutical Sciencedrug transportersIn Vitro TechniquesPharmacologydigestive systemCytochrome P-450 Enzyme SystemUDP-GLUCURONOSYLTRANSFERASE 1A1Constitutive androstane receptorHumansSTELLATE CELL ACTIVATIONEnzyme inducerinductionliver slicesCONSTITUTIVE ANDROSTANE RECEPTORchemistry.chemical_classificationPregnane X receptorbiologyCYP3A4Multidrug resistance-associated protein 2TransporterPRIMARY HUMAN HEPATOCYTESMetabolic Detoxication Phase IIdrug metabolismEnzymeLiverPharmaceutical PreparationsBiochemistrychemistryEnzyme Inductionbiology.proteinMetabolic Detoxication Phase IPREGNANE-X-RECEPTORCarrier ProteinsPROTOTYPICAL INDUCERSDrug metabolismBILE-ACIDEuropean Journal of Pharmaceutical Sciences
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Determination of DNA single strand breaks and selective DNA amplification by N-nitrodimethylamine and analogs, and estimation of the indicator cells'…

1986

N-nitrodimethylamine is metabolized oxidatively to N-nitrohydroxymethylmethylamine, which decomposes to yield formaldehyde and N-nitromethylamine. All four compounds and N-nitromethylamine were tested for their ability to induce DNA single strand breaks in hepatocytes and in SV 40-transformed Chinese hamster embryo cell lines. Only the two monoalkylnitramines were positive. They induced single strand breaks in hepatocytes, but were not effective in the other cells. Formaldehyde and N-nitrohydroxymethylmethylamine were toxic to the cells. None of the compounds tested was able to induce selective DNA amplification in the two transformed cell lines. Enzymes involved in drug metabolism were ass…

DNA ReplicationCancer ResearchHamsterDNA Single-StrandedSimian virus 40BiologyChinese hamsterCell Linechemistry.chemical_compoundCricetulusCricetinaeFormaldehydeAnimalsEpoxide hydrolaseCells Culturedchemistry.chemical_classificationDose-Response Relationship DrugDNA replicationGene AmplificationGeneral Medicinebiology.organism_classificationCell Transformation ViralEmbryo MammalianRatsEnzymeOncologychemistryBiochemistryLiverCell cultureDrug metabolismDNADimethylaminesJournal of cancer research and clinical oncology
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Hepatic metabolism of diclofenac: role of human CYP in the minor oxidative pathways.

1999

The aim of this study was to re-examine the human hepatic metabolism of diclofenac, with special focus on the generation of minor hydroxylated metabolites implicated in the idiosyncratic hepatotoxicity of the drug. Different experimental approaches were used: human hepatocytes, human microsomes, and engineered cells expressing single human CYP (cytochromes P450). Human hepatocytes formed 3'-hydroxy-, 4'-hydroxy-, 5-hydroxy- 4',5-dihydroxy-, and N,5-dihydroxydiclofenac, as well as several lactams. Formation of 4'- and 5-hydroxydiclofenac by human liver microsomes followed a Michaelis-Menten kinetics (Km 9 +/- 1 microM; Vmax 432 +/- 15 pmol/min/mg and Km 43 +/- 5 microM; and Vmax 15.4 +/- 0.6…

DiclofenacMetaboliteIn Vitro TechniquesBiochemistryCell LineHydroxylationCytochrome P-450 CYP2C8chemistry.chemical_compoundTolbutamideCytochrome P-450 Enzyme SystemmedicineHumansBiotransformationCytochrome P-450 CYP2C9PharmacologybiologyAnti-Inflammatory Agents Non-SteroidalCytochrome P450Metabolismmedicine.anatomical_structureBiochemistrychemistrySteroid 16-alpha-HydroxylaseHepatocyteSteroid HydroxylasesMicrosomebiology.proteinMicrosomes LiverAryl Hydrocarbon HydroxylasesOxidation-ReductionDrug metabolismmedicine.drug
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Intestinal drug efflux: formulation and food effects

2001

The intestine, primarily regarded as an absorptive organ, is also prepared for the elimination of certain organic acids, bases and neutral compounds depending on their affinity to intestinal carrier systems. Several of the transport systems known to mediate efflux in the major clearing organs--liver and kidney--are also expressed in the intestine. Examples of secretory transporters in the intestine are P-glycoprotein, members of the multidrug resistance associated protein family, breast cancer resistance protein, organic cation transporters and members of the organic anion polypeptide family. In this communication, the P-glycoprotein mediated intestinal secretion of talinolol, a model compo…

Drug CarriersIntestinal permeabilityOrganic cation transport proteinsbiologyPharmaceutical ScienceIleummedicine.diseaseRatsJejunumFood-Drug Interactionsmedicine.anatomical_structureSecretory proteinIntestinal AbsorptionPharmaceutical PreparationsBiochemistrybiology.proteinmedicineAnimalsHumansEffluxIntestinal MucosaDrug metabolismP-glycoproteinAdvanced Drug Delivery Reviews
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OSAnalyzer

2018

OSAnalyzer is a software tool able to compute the overall survival (OS) and progression-free survival (PFS) of cancer patients and evaluate their association with ADME gene variants.

Drug metabolismOncologyMicroarray experimentPharmacogenomicsneoplasms
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Computer simulations for bioequivalence trials: selection of analyte in BCS drugs with first-pass metabolism and two metabolic pathways.

2010

The objective of this work is to use a computer simulation approach to define the most sensitive analyte for in vivo bioequivalence studies of all types of Biopharmaceutics Classification System (BCS) drugs undergoing first-pass hepatic metabolism with two metabolic pathways. A semi-physiological model was developed in NONMEM VI to simulate bioequivalence trials. Four BCS classes (from Class I to IV) of drugs, with three possible saturation scenarios (non-saturation, saturation and saturation of only the major route of metabolism), two (high or low) dose schemes, and six types of pharmaceutical quality for the drug products were simulated. The number of investigated scenarios was 144 (4 × 3…

DrugAnalyteChemistrymedia_common.quotation_subjectMetabolitePharmaceutical SciencePharmacologyBioequivalenceBiopharmaceutics Classification SystemModels BiologicalNONMEMBiopharmaceuticschemistry.chemical_compoundPharmacokineticsPharmaceutical PreparationsTherapeutic EquivalencyArea Under CurveComputer SimulationDrug metabolismAlgorithmsMetabolic Networks and Pathwaysmedia_commonEuropean journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences
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Computer simulations of bioequivalence trials: selection of design and analyte in BCS drugs with first-pass hepatic metabolism: linear kinetics (I).

2008

Modeling and simulation approaches are useful tools to assess the potential outcome of different scenarios in bioequivalence studies. The aim of this study is to propose a new and improved semi-physiological model for bioequivalence trial simulations and apply it for all BCS (Biopharmaceutic Classification System) drug classes with non-saturated first-pass hepatic metabolism. The semi-physiological model was developed in NONMEM VI to simulate bioequivalence trials. Parent drug and metabolite levels for both reference and test were simulated. Eight types of drugs (with high or low permeability and high or low solubility (class I to IV) and high or low intrinsic clearance) were considered in …

DrugAnalytemedia_common.quotation_subjectMetabolitePharmaceutical ScienceBioequivalencePharmacologychemistry.chemical_compoundFirst pass effectPharmacokineticsHumansComputer SimulationPharmacokineticsTissue Distributionmedia_commonDose-Response Relationship DrugChemistryNONMEMLiverNonlinear DynamicsPharmaceutical PreparationsTherapeutic EquivalencyArea Under CurveData Interpretation StatisticalDrug metabolismAlgorithmsEuropean journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences
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Hepatocytes--the choice to investigate drug metabolism and toxicity in man: in vitro variability as a reflection of in vivo.

2007

The pharmaceutical industry is committed to marketing safer drugs with fewer side effects, predictable pharmacokinetic properties and quantifiable drug-drug interactions. Drug metabolism is a major determinant of drug clearance and interindividual pharmacokinetic differences, and an indirect determinant of the clinical efficacy and toxicity of drugs. Progressive advances in the knowledge of metabolic routes and enzymes responsible for drug biotransformation have contributed to understanding the great metabolic variations existing in human beings. Phenotypic as well genotypic differences in the expression of the enzymes involved in drug metabolism are the main causes of this variability. How…

DrugDiclofenacDrug-Related Side Effects and Adverse Reactionsmedia_common.quotation_subjectBiologyPharmacologyIn Vitro TechniquesToxicologyModels BiologicalPharmacokineticsCytochrome P-450 Enzyme SystemIn vivoGenetic variationHumansDrug InteractionsPharmacokineticsBiotransformationCells Culturedmedia_commonMolecular StructureAnti-Inflammatory Agents Non-SteroidalCytochrome P450Genetic VariationGeneral MedicineIn vitroPharmaceutical PreparationsToxicityInactivation Metabolicbiology.proteinHepatocytesDrug metabolismMetabolic Networks and PathwaysChemico-biological interactions
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