Search results for "Molecular Structure"

showing 10 items of 1246 documents

Event-based criteria in GT-STAF information indices: theory, exploratory diversity analysis and QSPR applications

2012

Versatile event-based approaches for the definition of novel information theory-based indices (IFIs) are presented. An event in this context is the criterion followed in the "discovery" of molecular substructures, which in turn serve as basis for the construction of the generalized incidence and relations frequency matrices, Q and F, respectively. From the resultant F, Shannon's, mutual, conditional and joint entropy-based IFIs are computed. In previous reports, an event named connected subgraphs was presented. The present study is an extension of this notion, in which we introduce other events, namely: terminal paths, vertex path incidence, quantum subgraphs, walks of length k, Sach's subg…

Quantitative structure–activity relationshipEntropyChemistry OrganicInformation TheoryQuantitative Structure-Activity RelationshipBioengineeringInformation theoryJoint entropyMolecular descriptorDrug DiscoveryComputer GraphicsCluster AnalysisEntropy (information theory)QuantumMathematicsDiscrete mathematicsMolecular StructureLinear modelComputational BiologyGeneral MedicineEthylenesModels TheoreticalLinear ModelsMolecular MedicineSubstructureHydrophobic and Hydrophilic InteractionsAlgorithmsSoftwareSAR and QSAR in Environmental Research
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A novel approach to predict aquatic toxicity from molecular structure

2008

The main aim of the study was to develop quantitative structure-activity relationship (QSAR) models for the prediction of aquatic toxicity using atom-based non-stochastic and stochastic linear indices. The used dataset consist of 392 benzene derivatives, separated into training and test sets, for which toxicity data to the ciliate Tetrahymena pyriformis were available. Using multiple linear regression, two statistically significant QSAR models were obtained with non-stochastic (R2=0.791 and s=0.344) and stochastic (R2=0.799 and s=0.343) linear indices. A leave-one-out (LOO) cross-validation procedure was carried out achieving values of q2=0.781 (scv=0.348) and q2=0.786 (scv=0.350), respecti…

Quantitative structure–activity relationshipEnvironmental EngineeringToxicity dataMolecular StructureLooHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryPollutionAquatic toxicologyToxicologyStructure-Activity RelationshipToxicity TestsBenzene derivativesTetrahymena pyriformisLinear regressionEnvironmental ChemistryBiological systemMathematicsChemosphere
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New hypoglycaemic agents selected by molecular topology.

2003

Abstract New compounds showing hypoglycaemic activity have been designed through a computer aided method based on quantitative structure–activity relationship (QSAR) and molecular connectivity. After calculation of topological indices for a set of 89 compounds including active and inactive with regards to hypoglycaemic action, linear discriminant analysis was performed so that a useful model to predict such an activity was achieved. Later on, the discriminant model was applied on a huge database so that fourteen compounds were selected as potential new hypoglycaemics. From them, just five were finally selected for experimental test on expected hypoglycaemic activity. Among the selected comp…

Quantitative structure–activity relationshipMolecular StructureDiscriminant modelPharmaceutical ScienceQuantitative Structure-Activity RelationshipPharmacologyLinear discriminant analysischemistry.chemical_compoundTolbutamidechemistryArabitolDrug DesignmedicinePotencyHypoglycemic AgentsMolecular topologymedicine.drugInternational journal of pharmaceutics
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Prospective computational design and in vitro bio-analytical tests of new chemical entities as potential selective CYP17A1 lyase inhibitors

2019

[EN] The development and advancement of prostate cancer (PCa) into stage 4, where it metastasize, is a major problem mostly in elder males. The growth of PCa cells is stirred up by androgens and androgen receptor (AR). Therefore, therapeutic strategies such as blocking androgens synthesis and inhibiting AR binding have been explored in recent years. However, recently approved drugs (or in clinical phase) failed in improving the expected survival rates for this metastatic-castration resistant prostate cancer (mCRPC) patients. The selective CYP17A1 inhibition of 17,20-lyase route has emerged as a novel strategy. Such inhibition blocks the production of androgens everywhere they are found in t…

Quantitative structure–activity relationshipStereochemistry01 natural sciencesBiochemistryStructure-Activity Relationship3D-QSAR pharmacophore modelDrug DiscoveryCytochrome P-450 Enzyme InhibitorsHumansStructure–activity relationshipCYP17A1 InhibitorMolecular BiologyDensity Functional TheoryVirtual screeningDose-Response Relationship DrugMolecular Structure010405 organic chemistryChemistryOrganic ChemistryProspective computational designSteroid 17-alpha-Hydroxylasecomputer.file_format1720-lyase selective inhibitionProtein Data BankLyase0104 chemical sciencesMolecular Docking Simulation010404 medicinal & biomolecular chemistryDocking (molecular)CYP17A1 inhibitorsMetastatic-castration resistant prostate cancerPharmacophorecomputer
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Bond-based bilinear indices for computational discovery of novel trypanosomicidal drug-like compounds through virtual screening

2014

Two-dimensional bond-based bilinear indices and linear discriminant analysis are used in this report to perform a quantitative structure-activity relationship study to identify new trypanosomicidal compounds. A data set of 440 organic chemicals, 143 with antitrypanosomal activity and 297 having other clinical uses, is used to develop the theoretical models. Two discriminant models, computed using bond-based bilinear indices, are developed and both show accuracies higher than 86% for training and test sets. The stochastic model correctly indentifies nine out of eleven compounds of a set of organic chemicals obtained from our synthetic collaborators. The in vitro antitrypanosomal activity of …

Quantitative structure–activity relationshipStereochemistryTrypanosoma cruziDrug Evaluation PreclinicalQuantitative Structure-Activity RelationshipBilinear interpolationSet (abstract data type)MiceDrug DiscoveryIc50 valuesmedicineAnimalsCells CulturedPharmacologyStochastic ProcessesVirtual screeningDose-Response Relationship DrugMolecular StructureChemistryMacrophagesOrganic ChemistryDiscriminant AnalysisGeneral MedicineLinear discriminant analysisTrypanocidal AgentsDiscriminantBenznidazoleBiological systemmedicine.drugEuropean Journal of Medicinal Chemistry
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Harmonization of QSAR Best Practices and Molecular Docking Provides an Efficient Virtual Screening Tool for Discovering New G-Quadruplex Ligands

2015

Telomeres and telomerase are key players in tumorogenesis. Among the various strategies proposed for telomerase inhibition or telomere uncapping, the stabilization of telomeric G-quadruplex (G4) structures is a very promising one. Additionally, G4 stabilizing ligands also act over tumors mediated by the alternative elongation of telomeres. Accordingly, the discovery of novel compounds able to act on telomeres and/or inhibit the telomerase enzyme by stabilizing DNA telomeric G4 structures as well as the development of approaches efficiently prioritizing such compounds constitute active areas of research in computational medicinal chemistry and anticancer drug discovery. In this direction, we…

Quantitative structure–activity relationshipTelomeraseGeneral Chemical EngineeringDrug Evaluation PreclinicalQuantitative Structure-Activity RelationshipComputational biologyLibrary and Information SciencesBiologyG-quadruplexCrystallography X-RayLigandsMolecular Docking Simulationchemistry.chemical_compoundDrug DiscoveryHumansCell ProliferationGeneticsVirtual screeningMolecular StructureDrug discoveryQSARGeneral ChemistryFibroblastsTelomereComputer Science ApplicationsTelomereG-QuadruplexesMolecular Docking SimulationchemistryAcridinesDNAHeLa Cells
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Association of N-(Pyridin-2-yl),N′-substituted Ureas with 2-Amino-1,8-naphthyridines and Benzoates: NMR and Quantum Chemical Studies of the Substitue…

2013

Association of four N-(pyridin-2-yl),N'-R(1)-ureas (R(1) = ethyl, n-butyl, phenyl, and tert-butyl) with substituted 2-amino-1,8-naphthyridines and benzoates were studied by (1)H NMR spectroscopic titrations and quantum chemical calculations. The benzoates and 2-amino-1,8-naphthyridines were selected as representatives of double and triple hydrogen bonding counterparts, respectively. The classical substituent effect on the association was studied. A prerequisite and a crucial step for the complex formation was the breaking of the intramolecular hydrogen bond in urea derivatives. The QTAIM calculation method was employed to explain the hydrogen bonding within complexes. In the case of benzoat…

Quantum chemicalMagnetic Resonance SpectroscopyMolecular StructureStereochemistryHydrogen bondOrganic ChemistryComplex formationSubstituentHydrogen BondingBenzoatesMedicinal chemistryBenzoateschemistry.chemical_compoundchemistryIntramolecular forceProton NMRQuantum TheoryUreaTitrationNaphthyridinesta116The Journal of Organic Chemistry
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Aza-isoindolo and isoindolo-azaquinoxaline derivatives with antiproliferative activity

2015

Abstract Three new ring systems, pyrido[2′,3′:3,4]pyrrolo[1,2- a ]quinoxalines, pyrido[3′,2′:3,4]pyrrolo[1,2- a ]quinoxalines and pyrido[2′,3′:5,6]pyrazino[2,1- a ]isoindoles, were synthesized through an aza-substitution on the already active isoindolo-quinoxaline system and in particular in the position 7 or 4 of the isoindole moiety and in position 5 of the quinoxaline portion. All new compounds were screened by the National Cancer Institute (Bethesda, MD) against a panel of 60 human tumor cell lines. Biological results of the most active derivatives, with pGI 50 values between 7.09 and 7.27, confirmed the importance of the presence of methoxy substituents for biological activity. The ant…

QuinoxalineIsoindolesAzaisoindolo-quinoxalinesStereochemistryAntiproliferative activity; Apoptosis; Azaisoindolo-quinoxalines; DNA interaction; Isoindolo-azaquinoxalines; Quinoxalines; Antineoplastic Agents; Apoptosis; Aza Compounds; Cell Line Tumor; Cell Proliferation; Dose-Response Relationship Drug; Drug Screening Assays Antitumor; Humans; Isoindoles; Molecular Structure; Quinoxalines; Structure-Activity Relationship; Drug Discovery3003 Pharmaceutical Science; Organic Chemistry; Pharmacology; Medicine (all)ApoptosisAntineoplastic AgentsAntiproliferative activityIsoindolesRing (chemistry)Drug Screening AssaysCell LineDose-Response Relationshipchemistry.chemical_compoundStructure-Activity RelationshipQuinoxalineCell Line TumorQuinoxalinesDrug DiscoverymedicineMoietyHumansAntiproliferative activity; Apoptosis; Azaisoindolo-quinoxalines; DNA interaction; Isoindolo-azaquinoxalines; Quinoxalines; Drug Discovery3003 Pharmaceutical Science; Organic Chemistry; PharmacologyCell ProliferationPharmacologyAza CompoundsAzaisoindolo-quinoxalineTumorDose-Response Relationship DrugMolecular StructureDrug Discovery3003 Pharmaceutical ScienceMedicine (all)Organic ChemistryApoptosiBiological activityGeneral MedicineAntitumorCell cycleSettore CHIM/08 - Chimica FarmaceuticaDNA interactionSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMechanism of actionchemistryIsoindolo-azaquinoxalineDrug Screening Assays Antitumormedicine.symptomDrugIsoindoleIsoindolo-azaquinoxalines
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Unraveling the role of the secretor antigen in human rotavirus attachment to histo-blood group antigens

2019

25 Páginas, 7 figuras, 2 tablas

RNA virusesRotavirusViral DiseasesPhysiologyViral Nonstructural ProteinsPathology and Laboratory MedicineCrystallography X-Raymedicine.disease_causeBiochemistryBinding AnalysisReovirusesImmune PhysiologyRotavirusMedicine and Health SciencesChemical PrecipitationBiology (General)Antigens ViralGastroenterologiachemistry.chemical_classification0303 health sciencesImmune System ProteinsCrystallographyMolecular StructurebiologyPhysics030302 biochemistry & molecular biologyChemical ReactionsRNA-Binding ProteinsCondensed Matter PhysicsLigand (biochemistry)Amino acidChemistryInfectious DiseasesMedical MicrobiologyViral PathogensVirusesPhysical SciencesCrystal StructurePathogensCrystallizationResearch ArticleChemical ElementsGlycanQH301-705.5Virus RNAViral proteinImmunologyResearch and Analysis MethodsMicrobiologyABO Blood-Group SystemCell Line03 medical and health sciencesAntigenVirologyGeneticsmedicineSolid State PhysicsHumansAntigensBinding siteMicrobial PathogensMolecular BiologyRotavirus InfectionChemical Characterization030304 developmental biologyChemical PhysicsBinding SitesBiology and life sciencesMutagenesisOrganismsProteinsRC581-607Molecular biologyCarbonchemistrybiology.proteinCapsid ProteinsParasitologyImmunologic diseases. AllergyPLOS Pathogens
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Enantioselective Palladium-Catalyzed Oxidative β,β-Fluoroarylation of α,β-Unsaturated Carbonyl Derivatives

2016

© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The site-selective palladium-catalyzed three-component coupling of deactivated alkenes, arylboronic acids, and N-fluorobenzenesulfonimide is disclosed herein. The developed methodology establishes a general, modular, and step-economical approach to the stereoselective β-fluorination of α,β-unsaturated systems.

Reaction mechanismHydrocarbons FluorinatedHalogenationStereochemistrychemistry.chemical_elementStereoisomerismAlkenes010402 general chemistry01 natural sciencesArticleCatalysisCatalysisFluorinatedfluorineOrganic chemistrychemistry.chemical_classificationSulfonamidesMolecular StructurealkenesAlkene010405 organic chemistryOrganic ChemistryEnantioselective synthesisHalogenationStereoisomerismGeneral ChemistryGeneral MedicinepalladiumBoronic AcidsHydrocarbons0104 chemical sciencesreaction mechanismschemistryChemical Sciencessynthetic methodsStereoselectivityOxidation-ReductionPalladiumPalladium
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