Search results for "Structure-Activity relationship"

showing 10 items of 743 documents

Novel Terphenyls and 3,5-Diaryl Isoxazole Derivatives Endowed with Growth Supporting and Antiapoptotic Properties

2008

A new study on terphenyl and diaryl-isoxazole and -isoxazoline derivatives, maintaining a common 3-adamantyl-4-hydroxyphenyl moiety, has been conducted to find compounds with growth supporting and antiapoptotic properties. Unexpectedly, diphenyisoxazole derivatives bearing a nitro group replacing the carboxylic function have been found with the highest cell protective activity within the series, in complete and in serum-free conditions. Inhibition of apoptosis induced by daunorubicin has also been observed for the most active compound.

chemistry.chemical_classificationMolecular StructureStereochemistryNitro compoundApoptosisBiological activityIsoxazolesChemical synthesisAntiapoptotic AgentStructure-Activity Relationshipchemistry.chemical_compoundchemistryCell Line TumorTerphenyl CompoundsTerphenylDrug DiscoveryNitroHumansMolecular MedicineMoietyIsoxazole
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Reduction of benzo(a)pyrene mutagenicity by dihydrodiol dehydrogenase

1979

THE enigma of how inert chemicals can exert potent mutagenic, carcinogenic, allergenic and cytotoxic effects has been much debated. It has been learned that such compounds are metabolically converted to chemically reactive species1. In the case of aromatic or olefinic compounds, monooxygenases located in the membranes of the cell can transform these compounds into epoxides2–5 which by virtue of electrophilic reactivity can bind chemically to cellular macromolecules such as DNA, RNA and proteins, thereby disturbing biochemical control mechanisms and leading to the above mentioned toxic effects. The same membranes in which such epoxides are produced possess an enzyme, epoxide hydratase, which…

chemistry.chemical_classificationMultidisciplinarybiologyChemistryEpoxideMonooxygenaseCofactorAlcohol OxidoreductasesMiceStructure-Activity Relationshipchemistry.chemical_compoundEnzymeBiochemistryBenzo(a)pyreneMutationMicrosomes Liverpolycyclic compoundsbiology.proteinAnimalsPyreneBenzopyrenesBiotransformationCarcinogenDNANature
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Biopartitioning micellar chromatography: An alternative high-throughput method for assessing the ecotoxicity of anilines and phenols

2007

An investigation of the use of the chromatographic retention (log k) as an in vitro approach for modelling the toxicity to Fathead Minnows of anilines and phenols is developed. A data set of 65 compounds with available experimental toxicity data was used. Log k data at three pH values were used for the compounds classification and two groups or 'MODEs' were identified. For one 'MODE' a quantitative retention-activity relationship (QRAR) model was calculated. Finally, it was used to estimate the toxicity to Fathead minnows of anilines and phenols for which experimental data are not available. These estimations were compared to those obtained from another toxicity (to Tetrahymena pyriformis) …

chemistry.chemical_classificationQuantitative structure–activity relationshipAniline CompoundsChromatographyToxicity dataTetrahymena pyriformisClinical BiochemistryCyprinidaeQuantitative Structure-Activity RelationshipAromatic amineExperimental dataCell BiologyGeneral MedicineBiochemistryAnalytical Chemistrychemistry.chemical_compoundPhenolschemistryTetrahymena pyriformisToxicityAnimalsSpectrophotometry UltravioletPhenolsEcotoxicityChromatography Micellar Electrokinetic CapillaryJournal of Chromatography B
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Current development of CFTR potentiators in the last decade

2020

Cystic fibrosis (CF) is a genetic disorder produced by the loss of function of CFTR, a main chloride channel involved in transepithelial salt and water transport. CFTR function can be rescued by small molecules called "potentiators" which increase gating activity of CFTR on epithelial surfaces. High throughput screening (HTS) assays allowed the identification of new chemical entities endowed with potentiator properties, further improved through medicinal chemistry optimization. In this review, the most relevant classes of CFTR potentiators developed in the last decade were explored, focusing on structure-activity relationships (SAR) of the different chemical entities, as a useful tool for t…

congenital hereditary and neonatal diseases and abnormalitiesHigh-throughput screeningGlycineComputational biologyQuinolonesVX-770Aminophenols01 natural sciencesCystic fibrosisCystic fibrosisSmall Molecule LibrariesStructure-Activity Relationship03 medical and health sciencesDrug DiscoverymedicineHumansCFTR potentiatorCFTRLoss function030304 developmental biologyPharmacology0303 health sciencesWater transportbiology010405 organic chemistryChemistryOrganic ChemistryCFTR potentiatorsBiological activityGeneral MedicineTriazolesPotentiatormedicine.diseaseCystic fibrosis transmembrane conductance regulator0104 chemical sciencesCystic fibrosiMutationChloride channelbiology.proteinCystic fibrosis transmembrane conductance regulatorEuropean Journal of Medicinal Chemistry
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Geometrical and conformational preferences of the 9‐fluorenylmethoxycarbonyl‐amino moiety

2004

Structural parameters, originating from x-ray crystallographic data, have been compiled for 13 derivatives of amino acids, peptides and related compounds, which contain a total of 14 Fmoc-NH- moieties. For these moieties, molecular geometries and conformations--described by the omegao, theta1, theta2 and theta3' torsion angles--were analysed and compared with the corresponding parameters for the Z-NH- and Boc-NH-moieties (290 and 553, respectively). To gain a deeper insight into the conformational features of the Fmoc-NH- moiety, ab initio free molecule calculations were performed for fully relaxed minima. Also the potential energy surface as a function of the torsion angles (theta3', theta…

crystal structureStereochemistryAb initioMolecular ConformationCrystal structureCrystallography X-RayBiochemistryBoc amino protectionStructure-Activity RelationshipfluoreneStructural BiologyAb initio quantum chemistry methodsDrug DiscoveryMoleculeMoietyurethane geometryFmoc amino protectionAmino AcidsMolecular BiologyPharmacologyFluorenesMolecular StructureChemistryHydrogen bondab initio calculationsOrganic ChemistryHydrogen BondingGeneral MedicineZ amino protectionMolecular geometryPotential energy surfaceMolecular MedicineCrystallizationPeptidesN‐terminally protected peptidesJournal of Peptide Science
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Genetic Determinants in a Critical Domain of NS5A Correlate with Hepatocellular Carcinoma in Cirrhotic Patients Infected with HCV Genotype 1b

2021

HCV is an important cause of hepatocellular carcinoma (HCC). HCV NS5A domain-1 interacts with cellular proteins inducing pro-oncogenic pathways. Thus, we explore genetic variations in NS5A domain-1 and their association with HCC, by analyzing 188 NS5A sequences from HCV genotype-1b infected DAA-naïve cirrhotic patients: 34 with HCC and 154 without HCC. Specific NS5A mutations significantly correlate with HCC: S3T (8.8% vs. 1.3%, p = 0.01), T122M (8.8% vs. 0.0%, p &lt

hepatitis C virusLiver CirrhosisMaleCirrhosisvirusesHepacivirusViral Nonstructural ProteinsNS5Amedicine.disease_causeSeverity of Illness Indexgenetic variabilityMedicineLiver Neoplasmsvirus diseaseshepatocellular carcinomaMiddle AgedHepatitis CQR1-502Infectious DiseasesHepatocellular carcinomaHCVHost-Pathogen InteractionsFemaleDisease SusceptibilityCarcinoma HepatocellularGenotypeHepatitis C virusViremiaMicrobiologyArticleStructure-Activity RelationshipVirologyGenetic variationHumansGenetic variabilityNS5AneoplasmsAgedbusiness.industrycirrhosisSequence Analysis DNAbiochemical phenomena metabolism and nutritiongenotype 1bmedicine.diseaseSettore MED/17digestive system diseasesMutationCancer researchbusinessCarcinogenesisBiomarkersViruses
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Structure-activity relationship of dopaminergic halogenated 1-benzyl-tetrahydroisoquinoline derivatives

2009

Two series of halogenated 1-benzyl-7-chloro-6-hydroxy-tetrahydroisoquinolines were prepared to explore the influence of each series on the affinity for dopamine receptors. All the compounds displayed a high affinity for D(1)-like and/or D(2)-like dopamine receptors in striatal membranes, although they were unable to inhibit [(3)H]-dopamine uptake in striatal synaptosomes. The halogen placed on the benzylic ring in 1-benzyl-THIQs, compounds of the series 1, 2'-bromobenzyl derivatives with K(i) values into the nanomolar range, and the series 2, 2',4'-dichlorobenzyl-THIQ homologues, proves to be an important factor to modulate affinity at dopamine receptor. (C) 2009 Elsevier Masson SAS. All ri…

inorganic chemicalsHalogenationStereochemistryChemical synthesisReceptors DopamineStructure-Activity Relationshipchemistry.chemical_compoundStructure–activity relationshipsDopamineTetrahydroisoquinolinesBiogenic amineDrug DiscoverymedicineAnimalsStructure–activity relationshipRats WistarNeurotransmitterDopamine receptorsSTRUCTURE-ACTIVITY RELATIONSHIPSPharmacologychemistry.chemical_classification1-Halogenated benzyl-7-chloro-6-hydroxy-tetrahydroisoquinolinesDopamine uptakReceptors Dopamine D2Receptors Dopamine D1Otras Ciencias QuímicasOrganic ChemistryDopaminergicCiencias QuímicasGeneral MedicineBinding1-Halogenated benzyl-7-chloro-6-hydroxytetrahydroisoquinolinesRatschemistryDopamine receptorDOPAMINE UPTAKECatecholamineFemaleCIENCIAS NATURALES Y EXACTASProtein Bindingmedicine.drug
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Synthesis, Characterization, and Cu(2+) Coordination Studies of a 3-Hydroxy-4-pyridinone Aza Scorpiand Derivative.

2016

The synthesis, acid-base behavior, and Cu(2+) coordination chemistry of a new ligand (L1) consisting of an azamacrocyclic core appended with a lateral chain containing a 3-hydroxy-2-methyl-4(1H)-pyridinone group have been studied by potentiometry, cyclic voltammetry, and NMR and UV-vis spectroscopy. UV-vis and NMR studies showed that phenolate group was protonated at the highest pH values [log K = 9.72(1)]. Potentiometric studies point out the formation of Cu(2+) complexes of 1:2, 2:2, 4:3, 1:1, and 2:1 Cu(2+)/L1 stoichiometries. UV-vis analysis and electrochemical studies evidence the implication of the pyridinone moieties in the metal coordination of the 1:2 Cu(2+)/L1 complexes. L1 shows …

inorganic chemicalsMagnetic Resonance SpectroscopyStereochemistryPyridinesPyridonesPotentiometric titrationProtonationChemistry Techniques Synthetic010402 general chemistry010403 inorganic & nuclear chemistryElectrochemistryCrystallography X-Ray01 natural sciencesMedicinal chemistryAntioxidantsCoordination complexInorganic Chemistrychemistry.chemical_compoundStructure-Activity RelationshipCoordination ComplexesHumansChelationPhysical and Theoretical ChemistryCell ProliferationChelating Agentschemistry.chemical_classificationLigandHydrogen-Ion Concentration0104 chemical scienceschemistryPotentiometrySpectrophotometry UltravioletCyclic voltammetryDerivative (chemistry)CopperHeLa CellsInorganic chemistry
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Prediction of properties of chiral compounds by molecular topology

1998

Abstract A common assumption in chemistry is that chiral behavior is associated with 3-D geometry. However, chiral information is related to symmetry, which allows the topological handling of chiral atoms by weighted graphs and the calculation of new descriptors that give a weight to the corresponding entry in the main diagonal of the topological matrix. In this study, it is demonstrated that, operating in this way, chiral topological indices are obtained that can differentiate the pharmacological activity between pairs of enantiomers. The 50% inhibitory concentration (IC50) values of the D2 dopamine receptor and the σ receptor for a group of 3-hydroxy phenyl piperidines are specifically pr…

inorganic chemicalsStereochemistryIn Vitro TechniquesMain diagonalStructure-Activity RelationshipMatrix (mathematics)PiperidinesComputational chemistryMaterials ChemistryAnimalsHypnotics and SedativesReceptors sigmaheterocyclic compoundsPhysical and Theoretical ChemistrySpectroscopyGroup (mathematics)Chemistryorganic chemicalsStereoisomerismComputer Graphics and Computer-Aided DesignDopamine D2 Receptor AntagonistsCharacter (mathematics)Models ChemicalDrug DesignCentral Nervous System StimulantsMolecular topologyEnantiomerSymmetry (geometry)Chirality (chemistry)Journal of Molecular Graphics and Modelling
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2018

Tetraspanins (Tspans) are a family of four-span transmembrane proteins, known as plasma membrane “master organizers.” They form Tspan-enriched microdomains (TEMs or TERMs) through lateral association with one another and other membrane proteins. If multiple microdomains associate with each other, larger platforms can form. For infection, viruses interact with multiple cell surface components, including receptors, activating proteases, and signaling molecules. It appears that Tspans, such as CD151, CD82, CD81, CD63, CD9, Tspan9, and Tspan7, coordinate these associations by concentrating the interacting partners into Tspan platforms. In addition to mediating viral attachment and entry, these …

lcsh:Immunologic diseases. Allergy0301 basic medicineCell signalingTetraspaninsMini ReviewreceptorImmunology610 MedizinbuddingvirusBiologyVirusStructure-Activity Relationship03 medical and health sciencesMembrane MicrodomainsTetraspanintrafficking610 Medical sciencesAnimalsHumansendocytosisImmunology and Allergy030102 biochemistry & molecular biologymicrodomainLipid microdomainMembrane ProteinsVirus InternalizationTransmembrane proteinCell biologytetraspanin030104 developmental biologyMembrane proteinViral replicationVirus DiseasesHost-Pathogen Interactionsentrylcsh:RC581-607BiomarkersCD81Frontiers in Immunology
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