Search results for "Phenanthrene"

showing 10 items of 101 documents

Effect of boldine, secoboldine, and boldine methine on angiotensin II-induced neutrophil recruitment in vivo.

2005

AbstractAngiotensin-II (Ang-II) has inflammatory activity and is involved in different diseases associated with the cardiovascular system. This study has evaluated the effect of boldine (B), and two phenanthrene alkaloids semisynthesized by us, secoboldine (SB) and boldine methine (BM), on Ang-II-induced neutrophil recruitment. Intraperitoneal administration of 1 nM Ang-II induced significant neutrophil accumulation, which was maximal at 4–8 h. BM inhibited neutrophil infiltration into the peritoneal cavity at 4 h and 8 h by 73% and 77%, respectively, SB at 8 h by 55%, and B had no effect on this response. Although BM inhibited the release of cytokine-inducible neutrophil chemoattractant/ke…

KeratinocytesMaleChemokineAporphinesEndotheliumNeutrophilsImmunologyChemokine CXCL2InflammationPharmacologyRats Sprague-Dawleychemistry.chemical_compoundIn vivomedicineImmunology and AllergyBoldineAnimalsHumansInfusions ParenteralPlatelet Activating FactorReceptorchemistry.chemical_classificationReactive oxygen speciesbiologyMolecular StructureAngiotensin IIMonokinesInterleukin-8Endothelial CellsCell BiologyPhenanthrenesAngiotensin IIRatsP-Selectinmedicine.anatomical_structureBiochemistrychemistrybiology.proteinIntercellular Signaling Peptides and Proteinsmedicine.symptomChemokinesReactive Oxygen SpeciesChemokines CXCJournal of leukocyte biology
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Unexpected DNA damage caused by polycyclic aromatic hydrocarbons under standard laboratory conditions

2007

Abstract The genotoxicity of 15 polycyclic aromatic hydrocarbons was determined with the alkaline version of the comet assay employing V79 lung fibroblasts of the Chinese hamster as target cells. These cells lack the enzymes necessary to convert PAHs to DNA-binding metabolites. Surprisingly, 11 PAHs, i.e., benzo[ a ]pyrene (BaP), benz[ a ]anthracene, 7,12-dimethylbenz[ a ]anthracene, 3-methylcholanthrene, fluoranthene, anthanthrene, 11 H -benzo[ b ]fluorene, dibenz[ a,h ]anthracene, pyrene, benzo[ ghi ]perylene and benzo[ e ]pyrene caused DNA strand breaks even without external metabolic activation, while naphthalene, anthracene, phenanthrene and naphthacene were inactive. When the comet as…

LightHealth Toxicology and MutagenesisAnthanthreneFluorenemedicine.disease_causeMedicinal chemistrychemistry.chemical_compoundCricetulusCricetinaeCytochrome P-450 CYP1A1polycyclic compoundsGeneticsmedicineAnimalsPolycyclic Aromatic HydrocarbonsBiotransformationCells CulturedFluorantheneAnthracenePhenanthreneComet assaychemistryPyreneComet AssayGenotoxicityDNA DamageMutation Research/Genetic Toxicology and Environmental Mutagenesis
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Chromone and phenanthrene alkaloids from Dennettia tripetala.

2002

Dennettine, a new 2,6-dimethoxychromone and three known phenanthrene alkaloids (uvariopsine, stephenanthrine and argentinine) in addition to the phenolic and known compound vanillin were isolated from the roots of Dennettia tripetala. Their structures were determined by physical and spectroscopical one dimensional (1D) and 2D-NMR analysis, including heteronuclear multiple bond correlation and nuclear Overhauser enhancement spectroscopy.

Magnetic Resonance SpectroscopyTertiary amineStereochemistryAnnonaceaePharmacognosyPlant RootsStephenanthrinechemistry.chemical_compoundAlkaloidsDrug DiscoveryOrganic chemistrySpectroscopyDennettia tripetalabiologyMolecular StructureVanillinUvariopsineGeneral ChemistryGeneral MedicineNuclear magnetic resonance spectroscopyPhenanthrenePhenanthrenesbiology.organism_classificationchemistryHeteronuclear moleculeAnnonaceaeChromonesChromoneChemicalpharmaceutical bulletin
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Synthesis of fjord region tetraols and their use in hepatic biotransformation studies of dihydrodiols of benzo[c]chrysene, benzo[g]chrysene and diben…

1998

Metabolic activation of the racemic benzo[c]chrysene-trans-9,10-, benzo[g]chrysene-trans-11,12- and dibenzo[a,l]pyrene-trans-11,12-dihydrodiols to fjord region syn- and anti-dihydrodiol epoxides by microsomes of Aroclor 1254-treated Sprague-Dawley rats has been examined. Since the fjord region dihydrodiol epoxides were hydrolytically unstable under the experimental conditions, their enzymatic formation was determined by analyzing the tetraols as their products of acidic hydrolysis upon addition of perchloric acid. The various stereoisomeric tetraols formed were separated by HPLC and identified by co-chromatography with authentic tetraols, which had been prepared by acidic hydrolysis of synt…

MaleChryseneCancer ResearchMagnetic Resonance SpectroscopyDiolEpoxideMedicinal chemistryChrysenesMass SpectrometryRats Sprague-Dawleychemistry.chemical_compoundpolycyclic compoundsAnimalsBenzopyrenesBiotransformationCarcinogenMolecular StructureStereoisomerismGeneral MedicinePhenanthrenesRatschemistryBiochemistryBenzopyreneCarcinogensMicrosomes LiverMicrosomeEpoxy CompoundsPyreneStereoselectivityMutagensCarcinogenesis
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Metabolism of 3-hydroxychrysene by rat liver microsomal preparations

1990

3-Hydroxychrysene, a metabolite of the polycyclic aromatic hydrocarbon (PAH) chrysene, was metabolised by rat liver microsomal preparations obtained from Arochlor 1254-pretreated rats. Eight major metabolites were isolated by high performance liquid chromatography and characterised by u.v. spectroscopy and a variety of mass spectrometric techniques. The metabolites were unambiguously identified as 9-hydroxy-trans-1,2-dihydroxy-1,2-dihydrochrysene and 9-hydroxy-r-1,t-2,t-3,c-4-tetrahydroxy-1,2,3,4-tetrahydrochrysene and tentatively identified as 3-hydroxy-trans-5,6-dihydroxy-5,6-dihydrochrysene (since chrysene is a symmetrical molecule the 3- and 9-positions are equivalent), 9-hydroxy-trans-…

MaleChryseneMetabolitePolycyclic aromatic hydrocarbonToxicologyHigh-performance liquid chromatographyChrysenesGas Chromatography-Mass SpectrometryMass Spectrometrychemistry.chemical_compoundAnimalsPhenolTCPOBiotransformationChromatography High Pressure Liquidchemistry.chemical_classificationChromatographyMolecular StructureRats Inbred StrainsGeneral MedicineMetabolismPhenanthrenesRatschemistryMicrosomes LiverMicrosomeSpectrophotometry UltravioletChemico-Biological Interactions
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Regiospecific oxidation of polycyclic aromatic dihydrodiols by rat liver dihydrodiol dehydrogenase

1991

Rat liver dihydrodiol dehydrogenase (DDH, E.C. 1.3.1.20) has recently been shown to oxidize the highly carcinogenic benz[a]anthracene-3,4- dihydrodiol in an NADP(+)-dependent reaction to its corresponding catechol. The present study is a systematic investigation of the substrate specificity of the purified enzyme towards synthetic trans-dihydrodiol metabolites of phenanthrene, benz[a]anthracene, chrysene, dibenz[a, h]anthracene and benzo[a]pyrene. DDH exhibited a remarkable regiospecificity of enzymatic catalysis with regard to the site of the dihydrodiol moiety of the parent hydrocarbon. M-region- and, with lower efficiency, bay-region dihydrodiols were found to be good substrates of the e…

MaleChryseneOxidoreductases Acting on CH-CH Group DonorsAnthraceneStereochemistryMetaboliteGeneral MedicinePhenanthreneToxicologyCatalysisDihydroxydihydrobenzopyrenesRatsSubstrate SpecificityEnzyme catalysisAlcohol OxidoreductasesKineticschemistry.chemical_compoundLiverchemistryBenzo(a)pyrenepolycyclic compoundsAnimalsPyreneOxidoreductasesCarcinogenChemico-Biological Interactions
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Glutathione Conjugation of Bay- and Fjord-Region Diol Epoxides of Polycyclic Aromatic Hydrocarbons by Glutathione Transferases M1-1 and P1-1

1997

Metabolism of polycyclic aromatic hydrocarbons in mammalian cells results in the formation of vicinal diol epoxides considered as ultimate carcinogens if the oxirane ring is located in a bay- or fjord-region of the parent compound. In the present study, individual stereoisomers of the bay-region diol epoxides of chrysene, dibenz[a,h]anthracene, and benzo[a]pyrene as well as of the fjord-region diol epoxides of benzo[c]phenanthrene, benzo[c]chrysene, and benzo[g]-chrysene have been incubated with GSH in the presence of human glutathione transferases GSTM1-1 (a mu-class enzyme) and GSTP1-1 (a pi-class enzyme). As previously shown with GSTA1-1 (an alpha-class enzyme) both M1-1 and P1-1 demonst…

Models MolecularChryseneStereochemistryConjugated systemToxicologySubstrate Specificitychemistry.chemical_compoundpolycyclic compoundsHumansPolycyclic Aromatic HydrocarbonsCarcinogenGlutathione TransferaseBay-Region Polycyclic Aromatic Hydrocarbonchemistry.chemical_classificationAnthraceneintegumentary systemStereoisomerismGeneral MedicineGlutathionePhenanthreneGlutathioneIsoenzymesKineticsEnzymechemistryCarcinogensEpoxy CompoundsPyreneCrystallizationChemical Research in Toxicology
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A Molecular Electron Density Theory Study of the Competitiveness of Polar Diels–Alder and Polar Alder-ene Reactions

2018

Indexación: Scopus. Funding: Ministry of Economy and Competitiveness (MINECO) of the Spanish Government, project CTQ2016-78669-P (AEI/FEDER, UE) and Fondecyt (Chile) grant 1180348. Acknowledgments: This research was supported by the Ministry of Economy and Competitiveness (MINECO) of the Spanish Government, project CTQ2016-78669-P (AEI/FEDER, UE) and Fondecyt (Chile) grant 1180348. L.R.D. thanks Fondecyt for continuous support through Cooperación Internacional. M.R.-G. also thanks MINECO for a post-doctoral contract cofinanced by the European Social Fund (BES-2014-068258). The competitiveness of the BF3 Lewis acid (LA) catalyzed polar Diels–Alder (P-DA) and polar Alder-ene (P-AE) reactions …

Models MolecularDienePharmaceutical Science01 natural sciencesAnalytical ChemistryDioxanesAlder-ene reactionschemistry.chemical_compoundComputational chemistryDrug DiscoverySingle bondLewis acids and basesBoranesLewis AcidsCycloaddition ReactionChemistryStereoisomerismPrins reactionMolecular Electron Density Theory Diels-Alder reactionsChemistry (miscellaneous)ElectrophileThermodynamicsMolecular Medicinecompetitive reactionscompetitive reactions polar reactionsAllylic rearrangementElectrons010402 general chemistryArticleCatalysislcsh:QD241-441lcsh:Organic chemistryPseudocyclic selectivityFormaldehydeButadienespolar reactionsPhysical and Theoretical ChemistryEne reactionDiels-Alder reactionsPrins reaction pseudocyclic selectivity010405 organic chemistryOrganic ChemistryMolecular Electron Density TheoryPolar reactionsPhenanthrenespseudocyclic selectivity0104 chemical sciencesPrins reactionQuantum TheoryCompetitive reactionsMolecules
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Synthesis of highly functionalized 9,10-phenanthrenequinones by oxidative coupling using MoCl5.

2012

The strong oxidative power of molybdenum pentachloride gives rise to an efficient oxidative C-C bond formation of benzil derivatives to the corresponding 9,10-phenanthrenequinones. A highly complementary method to previous approaches was developed. The required derivatives are accessible in a modular fashion and in excellent yields. By this approach the orchid-derived natural product cypripediquinone A was synthesized for the first time.

Models MolecularMolybdenumNatural productMolecular StructureOxidative CouplingOrganic ChemistryBond formationMolybdenum pentachloridePhenanthrenesPhotochemistryBiochemistryCombinatorial chemistrychemistry.chemical_compoundchemistryChloridesMoleculeOxidative coupling of methaneBenzilPhysical and Theoretical ChemistryOrganic letters
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Synthesis of C-17-functionalized spongiane diterpenes: diastereoselective synthesis of (-)-spongian-16-oxo-17-al, (-)-acetyldendrillol-1, and (-)-apl…

2003

The diastereoselective synthesis of spongiane diterpenes (-)-spongian-16-oxo-17-al 2, (-)-acetyldendrillol-1 15, and (-)-aplyroseol-14 16 has been completed efficiently via the common intermediate 14. Compound 14 was prepared in five synthetic steps from (+)-podocarp-8(14)-en-13-one 13, easily available from commercial (-)-abietic acid. The key steps in the syntheses were a regioselective reduction of a 1,4-dialdehyde unit, a one-pot acetalization-acetylation, and a translactonization. The synthesis of 15 and 16 has led us to a revision of the configuration at C-17 for natural (-)-acetyldendrillol-1 and a structural reassignment for aplyroseol-14. Thus, aplyroseol-14 16 presents an unpreced…

Models MolecularStereochemistryHerpesvirus 2 HumanMolecular ConformationAntineoplastic AgentsAldehydeChemical synthesisAntiviral AgentsCatalysischemistry.chemical_compoundAb initio quantum chemistry methodsTumor Cells CulturedAnimalsHumansNuclear Magnetic Resonance Biomolecularchemistry.chemical_classificationNatural productMolecular StructureOrganic ChemistryRegioselectivityStereoisomerismPhenanthrenesPoriferachemistryAbietanesIndicators and ReagentsDiterpeneDiterpenesEnoneLactoneHeLa CellsThe Journal of organic chemistry
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