Search results for "Structure–activity relationship"

showing 10 items of 290 documents

Struktur-Wirkungs-Beziehungen bei Analeptica vom Typ des Nicethamids, 3. Mitt. Synthese von Analogen des 6-Methyl-nicethamids

1975

Als potentiell analeptisch wirksame Substanzen mit partiell fixierter funktioneller Gruppe werden strukturanaloge Amide, Imide und Lactame des 2-Methyl-nicethamids synthetisiert. Synthesis of 2-Methyl-Nicethamide Analogues. As potentially analeptically active substances with partially fixed functional groups, structural analogues of 2-methyl-nicethamide, in the form of amides, imides and lactams, are synthesized.

chemistry.chemical_compoundChemistryStereochemistryAmideDrug DiscoveryPharmaceutical ScienceStructure–activity relationshipImideArchiv der Pharmazie
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Application of Molecular Topology to the Prediction of the Reaction Yield and Anticancer Activity of Imidazole and Guanidine Derivatives

2013

In this study molecular topology based QSAR has been applied to predict the reaction yield and anticancer activity of 18 imidazole and guanidine derivatives. Four properties were evaluated, namely reaction yield, anti prostatic-cancer activity, anti breast-cancer activity and anti lung-cancer activity. The four models have been validated by both internal and cross validation, and also by randomness tests. The results obtained are in full agreement with the experimental results and confirm the precision, accuracy and robustness of the method followed. After carrying out a virtual screening upon such models, new imidazole and guanidine derivatives with potential anticancer activity are propos…

chemistry.chemical_compoundVirtual screeningQuantitative structure–activity relationshipchemistryStereochemistryImidazoleMultiple linear regression analysisMolecular topologyCombinatorial chemistryGuanidine derivativesInternational Journal of Chemoinformatics and Chemical Engineering
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Struktur-Wirkungs-Beziehungen bei Histaminanaloga, 21. Mitt. Synthese und Wirkung Nα-substituierter Histamine

1980

Es wurden Nα-substituierte Histamine dargestellt und auf ihre agonistische Wirkung an Histamin H1- und H2-Rezeptoren untersucht. Structure-Activity Relationships of Histamine Analogues, XXI: Synthesis and Pharmacology of Nα-Substituted Histamines Nα-Substituted histamines were synthesized and investigated with regard to their agonistic activity at histamine H1 and H2 receptors.

chemistry.chemical_compoundchemistryHistamine H2 receptorDrug DiscoveryPharmaceutical ScienceStructure–activity relationshipPharmacologyHistamineArchiv der Pharmazie
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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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ChemInform Abstract: Synthesis and anti-Staphylococcal Activity of New Halogenated Pyrroles Related to Pyrrolomycins F.

2008

The chemical synthesis of new halogenated pyrroles related to pyrrolomycins F is described and the anti-staphylococcal activity compared. The replacement of 4′-bromo atom of parent compounds with two chloro atoms at 3′ and 5′ position increase the antibacterial activity against a reference strain of S. aureus.

inorganic chemicalsStrain (chemistry)StereochemistryChemistryStructure–activity relationshipGeneral MedicineAntibacterial activityChemical synthesisPyrrole derivativesChemInform
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Benzodiazepines: specific competitors for the binding of L-tryptophan to human serum albumin.

1975

By means of the gel filtration technique, the effect of nine benzo-diazepine derivates on the binding of l-tryptophan to human serum albumin was investigated. Using equimolar tryptophan and benzodiazepine concentrations, all benzodiazepines with binding constants higher than 104 (M−1), displace l-tryptophan from its binding site to a high degree. The mechanism of the displacement was characterized as a competition for a common binding site. Some of the benzodiazepines displace l-tryptophan to a greater extent than salicylic acid. The benzodiazepines and tryptophan are the only substances known with a high degree of stereospecific binding to human serum albumin. This study shows that there i…

medicine.drug_classSerum albuminPlasma protein bindingBinding CompetitiveBenzodiazepinesStructure-Activity RelationshipmedicineStructure–activity relationshipAnimalsHumansBinding siteSerum AlbuminPharmacologyBenzodiazepineBinding SitesbiologyChemistryTryptophanTryptophanSerum Albumin BovineGeneral MedicineMetabolismHuman serum albuminSalicylatesBiochemistrybiology.proteinChromatography Gelmedicine.drugProtein BindingNaunyn-Schmiedeberg's archives of pharmacology
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Synthesis, biological evaluation, and structure-activity relationship study of novel cytotoxic aza-caffeic acid derivatives.

2010

Abstract Three series of aza-caffeic acid derivatives with different linkers were designed and synthesized. Each of the synthesized derivatives was then used in cytotoxicity screening on either 8 or 12 human cancer cell lines. The structure–activity relationships on three structural regions A, B, and C are analyzed in detail, indicating that a nine bond linker B, containing a piperazine unit, is the most favorable linker leading to the generation of molecules with potent cytotoxicities. Compound ( E )-1-(4-(3,4-dichlorobenzyl)piperazin-1-yl)-3-(4-(4-ethoxybenzyloxy)-3,5-dimethoxyphenyl)prop-2-en-1-one ( 80 ) exhibited the most significant and selective cytotoxicity to KB, BEL7404, K562, and…

medicine.drug_classStereochemistryClinical BiochemistryPharmaceutical ScienceCarboxamideBiochemistryChemical synthesischemistry.chemical_compoundStructure-Activity RelationshipCaffeic AcidsCell Line TumorDrug DiscoverymedicineCaffeic acidStructure–activity relationshipHumansCytotoxicityCaffeic acid phenethyl esterMolecular BiologyAza CompoundsChemistryOrganic ChemistryFlow CytometryPiperazineBiochemistryMolecular MedicineLinkerBioorganicmedicinal chemistry
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Anti- Toxoplasma Activities of 24 Quinolones and Fluoroquinolones In Vitro: Prediction of Activity by Molecular Topology and Virtual Computational Te…

2000

ABSTRACT The apicoplast, a plastid-like organelle of Toxoplasma gondii , is thought to be a unique drug target for quinolones. In this study, we assessed the in vitro activity of quinolones against T. gondii and developed new quantitative structure-activity relationship models able to predict this activity. The anti- Toxoplasma activities of 24 quinolones were examined by means of linear discriminant analysis (LDA) using topological indices as structural descriptors. In parallel, in vitro 50% inhibitory concentrations (IC 50 s) were determined in tissue culture. A multilinear regression (MLR) analysis was then performed to establish a model capable of classifying quinolones by in vitro acti…

medicine.drug_classStereochemistryMolecular ConformationBiologyModels BiologicalStructure-Activity RelationshipAnti-Infective AgentsPredictive Value of TestsMoxifloxacinparasitic diseasesmedicineAnimalsStructure–activity relationshipComputer SimulationPharmacology (medical)Mechanisms of Action: Physiological EffectsAntibacterial agentPharmacology4-QuinolonesBiological activityQuinoloneGatifloxacinGrepafloxacinTrovafloxacinInfectious DiseasesRegression AnalysisToxoplasmaFluoroquinolonesmedicine.drugAntimicrobial Agents and Chemotherapy
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Design, synthesis and structure-activity relationship of 2-(3',4',5'-trimethoxybenzoyl)-benzo[b]furan derivatives as a novel class of inhibitors of t…

2009

The biological importance of microtubules in mitosis and cell division makes them an interesting target for the development of anticancer agents. Small molecules such as benzo[b]furans are attractive as inhibitors of tubulin polymerization. Thus, a new class of inhibitors of tubulin polymerization based on the 2-(3′,4′,5′-trimethoxybenzoyl)-benzo[b]furan molecular skeleton, with electron-donating (Me, OMe or OH) or electron-withdrawing (F, Cl and Br) substituents on the benzene ring, was synthesized and evaluated for antiproliferative activity, inhibition of tubulin polymerization and cell cycle effects. Adding a methyl group at the C-3 position resulted in increased activity. The most prom…

structure-activityStereochemistryClinical BiochemistryPharmaceutical ScienceAntineoplastic Agentsmacromolecular substancesBiochemistryChemical synthesisArticleStructure-Activity Relationshipchemistry.chemical_compoundbenzo[b]furansMicrotubuleCell Line TumorFuranDrug DiscoveryHumansStructure–activity relationshipMolecular BiologyBenzofuransCell ProliferationBinding SitesDose-Response Relationship DrugbiologyChemistryTubulin ModulatorsCell growthCell CycleOrganic ChemistrySmall moleculeTubulin Modulatorstubulin polymerizationTubulinDrug Designbiology.proteinMolecular MedicineProtein MultimerizationColchicine
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Synthesis and Structure-Affinity Relationships of Spirocyclic Benzopyrans with Exocyclic Amino Moiety

2019

σ1 and/or σ2 receptors play a crucial role in pathological conditions such as pain, neurodegenerative disorders, and cancer. A set of spirocyclic cyclohexanes with diverse O-heterocycles and amino moieties (general structure III) was prepared and pharmacologically evaluated. In structure-activity relationships studies, the σ1 receptor affinity and σ1:σ2 selectivity were correlated with the stereochemistry, the kind and substitution pattern of the O-heterocycle, and the substituents at the exocyclic amino moiety. cis-configured 2-benzopyran cis-11b bearing a methoxy group and a tertiary cyclohexylmethylamino moiety showed the highest σ1 affinity ( Ki = 1.9 nM) of this series of compounds. In…

synthesisexocyclic amino moietyReceptors Opioid mudocking studieCrystallography X-RayLigands01 natural sciencesopioid receptorschemistry.chemical_compoundProtein structureDrug DiscoveryMoiety0303 health sciencesσ1 receptor ligandsstructure (σ1) affinity relationshipmolecular dynamicBenzyl groupMolecular MedicinesynthesiBenzopyransSelectivityHydrophobic and Hydrophilic Interactionsfree binding enthalpyStereochemistrychange of receptor profileMolecular Dynamics Simulation03 medical and health sciencesStructure-Activity Relationshipσ1 receptor ligands; spirocyclic compounds; benzopyrans; benzofurans; exocyclic amino moiety; synthesis; structure (σ1) affinity relationships; σ1 antagonistic activity; receptor selectivity; molecular dynamics; docking studies; free binding enthalpy; X-ray crystal structure; opioid receptors; MOR affinity; change of receptor profile; structure MOR affinity relationshipsstructure (σ1) affinity relationshipsStructure–activity relationshipHumansReceptors sigmaBenzopyransSpiro Compoundsspirocyclic compoundBinding siteMOR affinity030304 developmental biologybenzopyranbenzofuransσ1 receptor ligandBinding Sitesspirocyclic compoundsreceptor selectivitystructure MOR affinity relationshipsdocking studiesbenzofuranopioid receptorX-ray crystal structuremolecular dynamics0104 chemical sciencesProtein Structure Tertiary010404 medicinal & biomolecular chemistrychemistrySalt bridgeσ1 antagonistic activity
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