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showing 10 items of 1921 documents

Kinetic-Spectrophotometric Determination of Primary and Secondary Amines by Reaction with 1-2 Naphthoquinone-4-Sulphonate.

1994

Abstract A kinetic-spectrophotometric method for the determination of primary and secondary amines is described. It is based on the coloured reaction of these amines with sodium 1,2 Naphthoquinone 4-sulphonate (NQS) in the presence of a non-ionic surfactant. For each determination the optimum conditions were studied and found to be as follows: pH 10.5. Carbonate-bicarbonate buffer 0.1M, Triton X-100 0.1%, Temperature 45°C, and NQS 6.4 × 10−3 M and interval of time 45–180s at wavelength 490 nm. The parameters used for the quantitative determinations are the reaction rate and the increase in the absorbance of the kinetic curves. This procedure has been applied to the determination of ephedrin…

Chromatographymedicine.diagnostic_testBiochemistry (medical)Clinical BiochemistryNQSBiochemistryNaphthoquinoneAnalytical ChemistryReaction rateAbsorbancechemistry.chemical_compoundSulfonatechemistrySpectrophotometryElectrochemistrymedicineDerivatizationQuantitative analysis (chemistry)SpectroscopyAnalytical Letters
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3,4-trans-4-Aryl-3-(1-pyridinio)-1,2,3,4-tetrahydropyridine-6-thiolates—new group of potential cardiotonic drugs

2005

Abstract 3,4- trans -4-Aryl-3-(1-pyridinio)-1,2,3,4-tetrahydropyridine-6-thiolates 6 – 11 were prepared by a Michael reaction of N -acetonylpyridinium chloride with 3-aryl-2-cyanothioacrylamides or by a one-pot three-carbon condensation of N -acetonylpyridinium chloride, aromatic aldehyde and 2-cyanothioacetamide, and their cardiotonic properties were studied. 3,4- trans -5-cyano-2-hydroxy-2-methyl-4-(3-nitrophenyl)-3-(1-pyridinio)-1,2,3,4-tetrahydropyridine-6-thiolate 8 was considered as a lead compound in this series since it in vitro experiments (spontaneously beating rat atria) showed a cardiotonic activity similar to that of milrinone 2 , however compound 8 induced activity at lover co…

ChronotropicCardiotonic AgentsPyridinesStereochemistryGuinea PigsBlood PressureCardiac activityIn Vitro TechniquesCardiotonic AgentsAldehydeChlorideChemical synthesischemistry.chemical_compoundHeart RateGroup (periodic table)Drug DiscoverymedicineAnimalsSulfhydryl CompoundsRats WistarPharmacologychemistry.chemical_classificationCardiotonic drugsArylOrganic ChemistryGeneral MedicineRatschemistryMilrinoneLead compoundMilrinonemedicine.drugEuropean Journal of Medicinal Chemistry
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Detection of Reactive Quinones in the Metabolism of Polycyclic Aromatic Hydrocarbons by the Formation of their Glutathione Conjugates

1996

Abstract The biotransformation of polycyclic aromatic hydrocarbons to quinones by rat liver microsomes was investigated. The employment of an electrochemical detector allowed the specific detection of quinones separated by reverse phase HPLC with higher sensitivity as compared to UV detection. Microsomal incubations of benzo[a]pyrene (BP) resulted in the formation of 1,6-, 3,6- and 6,12-quinones, of naphthalene in the detection of naphthalene-1,4-quinone, whereas ortho-quinones could only be detected in trace amounts. Additional protein binding studies showed that only 9–22% of synthetic ortho-quinones could be recovered from microsomal incubations. In order to scavenge possible reactive qu…

ChryseneChromatographyPolymers and PlasticsChemistryOrganic ChemistryGlutathioneQuinonechemistry.chemical_compoundBenzo(a)pyreneBiochemistryBiotransformationMaterials ChemistryMicrosomePyreneNaphthalenePolycyclic Aromatic Compounds
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Quinone reduction and redox cycling catalysed by purified rat liver dihydrodiol/3 alpha-hydroxysteroid dehydrogenase.

1992

A highly active preparation of rat liver dihydrodiol/3 alpha-hydroxysteroid dehydrogenase was obtained using a newly developed, rapid purification scheme involving affinity chromatography on Red Sepharose. Depending on the coenzyme present, the purified enzyme was found to catalyse the oxidation of dihydrodiols and steroids or the reduction of substrates with carbonyl or quinone moieties. Using a wide range of synthetic quinones derived from polycyclic aromatic hydrocarbons (PAHs), we observed a pronounced regioselectivity of the quinone reductase activity. Good substrates were the o-quinones of phenanthrene, benz(a)anthracene, chrysene and benzo(a)pyrene with the quinonoid moiety in the K-…

ChryseneMaleStereochemistryDehydrogenaseBiochemistrychemistry.chemical_compoundDuroquinoneOxygen ConsumptionMenadioneNAD(P)H Dehydrogenase (Quinone)AnimalsPolycyclic CompoundsPharmacologyAnthraceneBinding SitesHydroxysteroid DehydrogenasesQuinonesRats Inbred StrainsPhenanthreneQuinoneRatschemistryLiverPyreneOxidoreductasesOxidation-ReductionNADPBiochemical pharmacology
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Pauson-Khand reaction of internal dissymmetric trifluoromethyl alkynes. Influence of the alkene on the regioselectivity.

2014

Abstract: The scope of the Pauson-Khand reaction (PKR) of internal trifluoromethyl alkynes, previously described with norbornadiene, is expanded to norbornene and ethylene. A thorough structural analysis of the resulting PK adducts has been carried out to unveil that α-trifluoromethylcyclopentenones are preferred in all cases, independently of the electronic properties of the alkyne. The regioselectivity observed with norbornadiene and ethylene is higher than in the case of norbornene.

Ciclització (Química)EthyleneHydrocarbons FluorinatedStereochemistryNorbornadieneQuímica organometàl·licaPharmaceutical ScienceAlkynetrifluoromethylalkynesCrystallography X-RayArticlecyclopentenonesAnalytical ChemistryRing formation (Chemistry)cycloadditionslcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryDrug DiscoveryPhysical and Theoretical ChemistryNorbornenechemistry.chemical_classificationPauson-Khand reactionTrifluoromethylMolecular StructureAlkenePauson–Khand reactionOrganic ChemistryRegioselectivityStereoisomerismCobaltEthylenesNorbornaneschemistryOrganometallic chemistryChemistry (miscellaneous)AlkynesregioselectivityMolecular MedicineMolecules (Basel, Switzerland)
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Modelo matemático de sistema reproductivo de una planta arbustiva mediterránea:Ulex parviflorus POURR.

2003

La tesis se enmarca dentro de la Teoría General de Sistemas, en el área de conocimientos denominada Ecología Sistémica (Systems Ecology) y es por esta razón por lo que está estructurada pasando de lo general (Teoría del Ecosistema) a lo particular (Ecosistema Mediterráneo terrestre). Por el mismo motivo se pasa -en la interpretación semiótica de la Realidad o Modelo- de lo general (El modelo matemático) a lo particular (el modelo matemático ARGILAGA de una especie arbustiva mediterránea, siguiendo la metodología SDWTF). El objetivo es desarrollar un modelo matemático que analiza y evalúa los cambios que puede sufrir la vegetación mediterránea, y las consecuencias que esto puede tener sobre …

Ciencias Biológicasnone58
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Total Synthesis of (-)-Hymenosetin.

2015

The 3-decalinoyltetramic acid (−)-hymenosetin and its N-methyl analogue were prepared in 11 and 8 steps, respectively, from (+)-citronellal using an intramolecular Diels–Alder reaction as the key step. This method represents the first example for the synthesis of a 3-decalinoyltetramic acid with a free NH moiety. The stereochemistry of the title compound, an unnatural diastereomer, and of a decalin building block was studied in detail using circular dichroism spectroscopy in the IR and UV/VIS freqeuncy range. This allowed to determine the absolute configuration of the natural product and to plan the synthetic route.

Circular dichroismBiological ProductsCycloaddition ReactionMolecular Structure010405 organic chemistryChemistryStereochemistryOrganic ChemistryAbsolute configurationDiastereomerTotal synthesisStereoisomerism010402 general chemistry01 natural sciencesPyrrolidinones0104 chemical scienceschemistry.chemical_compoundDecalinIntramolecular forceMoietyMoleculeThe Journal of organic chemistry
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Induction of Secondary Metabolites from the Marine-Derived Fungus Aspergillus versicolor through Co-cultivation with Bacillus subtilis

2019

AbstractA new cyclic pentapeptide, cotteslosin C (1), a new aflaquinolone, 22-epi-aflaquinolone B (3), and two new anthraquinones (9 and 10), along with thirty known compounds (2, 4 – 8, 11 – 34) were isolated from a co-culture of the sponge-associated fungus Aspergillus versicolor with Bacillus subtilis. The new metabolites were only detected in the co-culture extract, but not when the fungus was grown under axenic conditions. Furthermore, the co-culture extract exhibited an enhanced accumulation of the known constituents versicolorin B (14), averufin (16), and sterigmatocyctin (19) by factors of 1.5, 2.0, and 4.7, respectively, compared to the axenic fungal culture. The structures of the …

Circular dichroismMagnetic Resonance SpectroscopyStereochemistryPharmaceutical ScienceAnthraquinonesMicrobial Sensitivity TestsBacillus subtilisQuinolonesGram-Positive BacteriaPeptides CyclicMass SpectrometryAnalytical ChemistryMicechemistry.chemical_compoundTermészettudományokCell Line TumorDrug DiscoveryAnthraquinonesAnimalsKémiai tudományokAxenicPharmacologyDose-Response Relationship DrugbiologyCytotoxinsChemistryCircular DichroismOrganic ChemistryAbsolute configurationbiology.organism_classificationCoculture TechniquesAnti-Bacterial AgentsAspergillusComplementary and alternative medicineMolecular MedicineAspergillus versicolorAntibacterial activityBacteriaBacillus subtilisPlanta Medica
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Influence of pH on the benzodiazepine-human serum albumin complex. Circular dichroism studies.

1974

The influence of pH on the binding of benzodiazepine derivatives to HSA was studied by circular dichroism measurements and by gel filtration. The binding of nearly all benzodiazepines is increased by rising the pH from 6.60 to 8.20. For flurazepam, clonazepam, and nitrazepam this increase in binding is due to an increase of the affinities, while for the other substances the affinity remains constant and the number of binding sites is increased from one to two. The changes in binding of the benzodiazepines by rising the pH are explained by a cationic amino acid residue near or at the benzodiazepine binding site of the HSA molecule. This second binding site is not detectable by circular dichr…

Circular dichroismNitrazepamChemical Phenomenamedicine.drug_classStereochemistryFlurazepamSize-exclusion chromatographyPlasma protein bindingFlurazepammedicineHumansBinding siteNitrazepamSerum AlbuminPharmacologyBenzodiazepineBenzodiazepinonesBinding SitesDiazepamChemistryOxazepamCircular DichroismOsmolar ConcentrationChlordiazepoxideGeneral MedicineBenzazepinesHydrogen-Ion ConcentrationHuman serum albuminChemistryKineticsBiophysicsmedicine.drugProtein BindingNaunyn-Schmiedeberg's archives of pharmacology
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Novel atrazine-binding biomimetics inspired to the D1 protein from the photosystem II of Chlamydomonas reinhardtii.

2020

Biomimetic design represents an emerging field for improving knowledge of natural molecules, as well as to project novel artificial tools with specific functions for biosensing. Effective strategies have been exploited to design artificial bioreceptors, taking inspiration from complex supramolecular assemblies. Among them, size-minimization strategy sounds promising to provide bioreceptors with tuned sensitivity, stability, and selectivity, through the ad hoc manipulation of chemical species at the molecular scale. Herein, a novel biomimetic peptide enabling herbicide binding was designed bioinspired to the D1 protein of the Photosystem II of the green alga Chlamydomonas reinhardtii. The D1…

Circular dichroismPhotosystem IIProtein ConformationSupramolecular chemistryPlastoquinoneChlamydomonas reinhardtiiPeptide02 engineering and technologyMolecular Dynamics SimulationBiochemistryFluorescence spectroscopy03 medical and health scienceschemistry.chemical_compoundStructural BiologyBiomimeticsAmino Acid SequencePhotosynthesisMolecular Biology030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyRational designphotosystem IIPhotosystem II Protein ComplexGeneral Medicine021001 nanoscience & nanotechnologybiology.organism_classificationSpectrometry FluorescencechemistryArtificial peptides Atrazine sensing Rational designBiophysicsThermodynamicsAtrazine0210 nano-technologyPeptidesChlamydomonas reinhardtiiInternational journal of biological macromolecules
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