Search results for "Isomerism"

showing 10 items of 747 documents

Biotransformation in vitro of the 22R and 22S epimers of budesonide by human liver, bronchus, colonic mucosa and skin.

2001

The pharmacological effects of glucocorticoids are greatly influenced by their pharmacokinetic properties. In the present report, the in vitro biotransformation of the 22R and 22S epimers of the topical steroid budesonide was studied in the S-9 fraction of human liver, bronchus, skin and colonic mucosa. The disappearance of unchanged epimers of budesonide was measured during 90 min of incubation by high performance liquid chromatography. The rate of disappearance was high in human liver while little biotransformation occurred in bronchial tissue and colonic mucosa, and none was detected in the skin. A marked decay of the initial concentration of unchanged budesonide epimers was noticed afte…

Budesonidemedicine.medical_specialtyColonAdministration TopicalAnti-Inflammatory AgentsBronchiCell LineTherapeutic indexPharmacokineticsBiotransformationInternal medicineCulture TechniquesmedicineHumansPharmacology (medical)Intestinal MucosaBudesonideIncubationGlucocorticoidsBiotransformationCells CulturedSkinPharmacologyBronchusChemistryStereoisomerismIn vitroEndocrinologymedicine.anatomical_structureLiverHepatocytesEpimermedicine.drugFundamentalclinical pharmacology
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Fast evaluation of enantioselective drug metabolism by electrophoretically mediated microanalysis: application to fluoxetine metabolism by CYP2D6.

2013

In this work, a capillary electrophoretic methodology for the enantioselective in vitro evaluation of drugs metabolism is applied to the evaluation of fluoxetine (FLX) metabolism by cytochrome 2D6 (CYP2D6). This methodology comprises the in-capillary enzymatic reaction and the chiral separation of FLX and its major metabolite, norfluoxetine enantiomers employing highly sulfated β-CD and the partial filling technique. The methodology employed in this work is a fast way to obtain a first approach of the enantioselective in vitro metabolism of racemic drugs, with the additional advantage of an extremely low consumption of enzymes, CDs and all the reagents involved in the process. Michaelis-Men…

CYP2D6animal structuresChromatographyMetaboliteClinical BiochemistryEnantioselective synthesisElectrophoresis CapillaryStereoisomerismMetabolismBiochemistryRecombinant ProteinsAnalytical Chemistrychemistry.chemical_compoundKineticsSulfationchemistryCytochrome P-450 CYP2D6ReagentFluoxetineHumansEnantiomerDrug metabolismElectrophoresis
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Lower rim arylation of calix[n]arenes with extended perfluorinated domains

2006

Abstract Exhaustive O-arylation of p-tert -butylcalix[ n ]arenes 2 ( n  = 4–8) with an excess of 3-pentadecafluoroheptyl-5-pentafluorophenyl-1,2,4-oxadiazole 3 and K 2 CO 3 in refluxing acetonitrile provides an easy entry to a new family of perfluorinated calix[ n ]arenes 1 . The cyclic tetramer furnishes a mixture of cone , partial cone , and 1,2-alternate conformers, while the larger macrocycles afford single products. The structures of all new compounds are substantiated by NMR techniques and MALDI-TOF mass spectral data. Single-crystal X-ray diffraction studies on the pentamer derivative 1b reveal a distorted cone-in conformation of the calixarene cup.

Calixarenes; organofluorine derivativeChemistryPentamerOrganic ChemistryBiochemistryCrystallographychemistry.chemical_compoundTetramerDrug DiscoveryCalixareneCalixarenesSpectral dataAcetonitrileorganofluorine derivativeConformational isomerismDerivative (chemistry)
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Malignant transformation of the liver tumour precursor cell line OC/CDE 22 by the four stereoisomeric fjord region 3,4-dihydrodiol 1,2-epoxides of be…

1995

In previous work we established the rat liver oval cell line OC/CDE 22 in order to study in vitro mechanisms of liver cell transformation. We have now exposed OC/CDE 22 cells to each of the four optically active fjord region dihydrodiol epoxides of benzo[c]phenanthrene to investigate their capacity for malignant transformation of liver cells. All four configurational isomers, which are among the most potent carcinogenic metabolites of polycyclic aromatic hydrocarbons tested in murine tumour models, malignantly transform OC/CDE 22 cells at a 2 microM dose level, resulting in a similar colony-forming efficiency in soft agar. Inoculation of the transformed cells into newborn syngeneic rats pro…

Cancer ResearchBenzo(c)phenanthreneMalignant transformationRats Sprague-Dawleychemistry.chemical_compoundLiver Neoplasms ExperimentalTumor Cells CulturedmedicineAnimalsCarcinogenConfluencyCell growthLiver cellStereoisomerismGeneral MedicinePhenanthrenesRatsCell Transformation Neoplasticmedicine.anatomical_structureLiverchemistryBiochemistryCell cultureHepatocyteCarcinogensPrecancerous ConditionsCell DivisionCarcinogenesis
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Activating mutations in human c-Ha-ras-1 protooncogene induced by stereoisomeric fjord-region benzo[c]chrysene diol-epoxides.

1995

The mutagenicity of fjord-region benzo[c]chrysene diol-epoxide (BcCDE) stereoisomers((+) anti-BcCDE, (-)anti-BcCDE, (+)syn-BcCDE, and (-)syn-BcCDE) was studied in a forward-mutation system. pEC plasmid containing the human c-Ha-ras-1 proto-oncogene was reacted in vitro with each optically active isomer separately and transfected into NIH/3T3 cells. Morphologically transformed foci were cloned, and DNA obtained from these foci was tested for the presence of Ha-ras-1 sequence by Southern blot analysis. A total of 50 transformed foci (11-14 for each diastereomer) were generated. To determine the nature of mutations responsible for activating the proto-oncogene, regions of the gene likely to co…

Cancer ResearchGuanineMolecular Sequence DataGene mutationBiologymedicine.disease_causePolymerase Chain ReactionProto-Oncogene MasChryseneschemistry.chemical_compoundMicemedicineAnimalsHumansPoint MutationTransversionMolecular BiologyGeneSouthern blotMutationBase SequenceMutagenicity TestsPoint mutationNucleic Acid HybridizationStereoisomerism3T3 CellsMolecular biologyGenes raschemistryGene Expression RegulationMutationOligonucleotide ProbesDNAMutagensMolecular carcinogenesis
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Reinvestigation of the synthesis and evaluation of [N-methyl-11C]vorozole, a radiotracer targeting cytochrome P450 aromatase

2009

Abstract Introduction We reinvestigated the synthesis of [ N -methyl- 11 C]vorozole, a radiotracer for aromatase, and discovered the presence of an N -methyl isomer which was not removed in the original purification method. Herein we report the preparation and positron emission tomography (PET) studies of pure [ N -methyl- 11 C]vorozole. Methods Norvorozole was alkylated with [ 11 C]methyl iodide as previously described and also with unlabeled methyl iodide. A high-performance liquid chromatography (HPLC) method was developed to separate the regioisomers. Nuclear magnetic resonance (NMR) spectroscopy ( 13 C and 2D-nuclear Overhauser effect spectroscopy NMR) was used to identify and assign s…

Cancer ResearchMagnetic Resonance SpectroscopyTime FactorsAlkylationStereochemistryStereoisomerismNuclear Overhauser effectAlkylationHigh-performance liquid chromatographyArticlechemistry.chemical_compoundAromatasemedicineStructural isomerAnimalsRadiology Nuclear Medicine and imagingHydrocarbons IodinatedRadioactive TracersChromatography High Pressure LiquidChemistryBrainStereoisomerismNuclear magnetic resonance spectroscopyTriazolesPositron-Emission TomographyVorozoleMolecular MedicineFemalePapiomedicine.drugMethyl iodideNuclear Medicine and Biology
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Tumor-initiating activity of the (+)-(S,S)- and (−)-(R,R)-enantiomers of trans-11,12-dihydroxy-11,12-dihydrodibenzo[a,l]pyrene in mouse skin

1999

Abstract A single administration of enantiomerically pure 11,12-dihydrodiols of dibenzo[ a,l ]pyrene (DB[ a,l ]P) on the back of NMRI mice and subsequent chronic treatment with 12- O -tetradecanoylphorbol 13-acetate (TPA) (initiation/promotion assay) revealed strikingly different carcinogenic activities of both enantiomers. Tumor-initiating activity of (−)-(11 R ,12 R )-DB[ a,l ]P-dihydrodiol, which is the metabolic precursor of the (−)- anti -(11 R ,12 S )-dihydrodiol (13 S ,14 R )-epoxide, was exceptionally higher than the corresponding effect of (+)-(11 S ,12 S )-DB[ a,l ]P-dihydrodiol, the metabolic precursor of (+)- syn -(11 S ,12 R )-dihydrodiol (13 S ,14 R )-epoxide. After topical ap…

Cancer ResearchSkin NeoplasmsTime FactorsCarcinogenicity TestsStereochemistryEpoxideTumor initiationmedicine.disease_causeMicechemistry.chemical_compoundpolycyclic compoundsmedicineAnimalsBenzopyransCarcinogenCarcinogenic Polycyclic Aromatic HydrocarbonDose-Response Relationship DrugChemistryStereoisomerismSurvival RateOncologyBiochemistryCarcinogensPyreneFemaleStereoselectivityEnantiomerGenotoxicityCancer Letters
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Detoxification of optically active bay- and fjord-region polycyclic aromatic hydrocarbon dihydrodiol epoxides by human glutathione transferase P1-1 e…

1998

Dihydrodiol epoxides (DEs) are important carcinogenic metabolites of polycyclic aromatic hydrocarbons (PAHs). The metabolic formation of four stereoisomeric DEs (a pair of optically active diastereomers termed as syn- and anti-form) is possible. Glutathione tranferases (GSTs) have been demonstrated to catalyze the detoxification of DEs. Purified GSTs display remarkable differences in catalytic efficiencies towards bay- and fjord-region DEs along with a high degree of regio- and stereoselectivity. Here we determined to which extent heterologously expressed human GSTP1-1, a major GST isoform in lung, affects the mutagenicity of stereoisomeric bay-region DEs of benzo[a]pyrene in Chinese hamste…

Cancer ResearchStereochemistryEpoxidePolycyclic aromatic hydrocarbonChinese hamsterCell Linechemistry.chemical_compoundCricetinaeAnimalsHumansPolycyclic Aromatic HydrocarbonsCarcinogenGlutathione TransferaseBay-Region Polycyclic Aromatic Hydrocarbonchemistry.chemical_classificationbiologyStereoisomerismGeneral MedicinePhenanthrenebiology.organism_classificationIsoenzymesEnzymeGlutathione S-Transferase pichemistryBiochemistryInactivation MetabolicCarcinogensEpoxy CompoundsPyreneStereoselectivityMutagensCarcinogenesis
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Glutathione conjugation of trans-3,4-dihydroxy 1,2-epoxy l,2,3,4-tetrahydrobenzo[c]phenanthrene isomers by human glutathione transferases

1992

Each of the four stereoisomers of trans-3,4-dihydroxy 1,2-epoxy 1,2,3,4-tetrahydrobenzo[c]phenanthrene [(+)- and (-)-anti-BPhDE and (+)- and (-)-syn-BPhDE] has been incubated with the human glutathione transferase (GST) isoenzymes GST A1-1, GST M1-1 and GST P1-1, representing class alpha, mu and pi respectively, and glutathione (GSH). The conjugates formed were analyzed by HPLC and the results demonstrate that all GST isoenzymes catalyze the formation of GSH conjugates of all BPhDE isomers. However, a marked variation in catalytic efficiencies was observed (0.122-1.28/mM/s). These values are considerably lower than those previously estimated for the bay-region diol epoxides of benzo[a]pyren…

Cancer ResearchbiologyChemistryStereochemistryAbsolute configurationEpoxideStereoisomerismGeneral MedicineGlutathioneNuclear magnetic resonance spectroscopychemistry.chemical_compoundGlutathione S-transferaseBiochemistrybiology.proteinPyreneCarcinogenCarcinogenesis
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Structural Characterization of Isomeric Dimers from the Oxidative Oligomerization of Catechol with a Biomimetic Catalyst

2007

In a previous paper, it has been reported about the formation of catechol di-, tri- and tetramers within an oxidative polymerization catalyzed by synthetic water-soluble iron-porphyrin as an efficient alternative to bio-labile natural peroxidase. It has also been demonstrated the occurrence of both C-C and C-O-C coupling mechanisms. However, since the coupling products were determined by mass spectroscopy, the exact bonding position could not have been precisely ascertained for the C-C bonded isomeric dimers that are the dominant products of catechol oligomerization. Therefore, here isolation and characterization of catechol isomeric dimers, obtained by oxidative coupling under the catalysi…

CatecholPolymers and PlasticsDimerMolecular MimicrySettore AGR/13 - Chimica AgrariaCatecholsRegioselectivityBioengineeringOxidative phosphorylationOxidative cathecolOligomerCatalysisCatalysisBiomaterialschemistry.chemical_compoundIsomerismPhenolschemistryPolymer chemistryMaterials ChemistryMoleculeOxidative coupling of methaneDimerizationOxidation-Reduction
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