Search results for "Chemical Synthesis"

showing 10 items of 285 documents

Synthesis and antifungal activity of new N-(1-phenyl-4-carbetoxypyrazol-5-yl)-, N-(indazol-3-yl)- and N-(indazol-5-yl)-2-iodobenzamides

2002

N-(1-Phenyl-4-carbetoxypyrazol-5-yl)-, N-(indazol-3-yl)- and N-(indazol-5-yl)-2-iodobenzamides 6, with a Benodanil-like structure, were synthesized by refluxing in acetic acid the corresponding benzotriazinones 5 with potassium iodide for 1 h in order to study the role on the antifungal activity of the N-substitution with an aromatic heterocyclic system on benzamide moiety. Among the tested iododerivatives, compounds 6d,f,g,h possess interesting activities toward some phytopathogenic fungal strains.

AntifungalAntifungal AgentsIndazolesMagnetic Resonance SpectroscopySpectrophotometry Infraredmedicine.drug_classStereochemistryColony Count MicrobialPharmaceutical Sciencechemistry.chemical_elementCarboxamideMicrobial Sensitivity TestsIodineChemical synthesisAcetic acidchemistry.chemical_compoundN-(1-phenyl-4-carbetoxypyrazol-5-yl)-2-iodobenzamides N-(indazol-3-yl)-2-iodobenzamides N-(indazol-3-yl)-2-iodobenzamides antifungal activityDrug DiscoverymedicineMoietyBenzamideChemistryFungiSettore CHIM/08 - Chimica FarmaceuticaBenzamidesPyrazolesIl Farmaco
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Plant extracts as green reductants for the synthesis of silver nanoparticles: lessons from chemical synthesis.

2018

The increasing use of silver (Ag) nanoparticles (NPs) in daily-life applications, electronics, or catalysis calls for green and cost-efficient synthetic methods. Ag NPs are used especially in biomedicine because of their antibacterial, antifungal, or anticancer properties. Chemical synthesis allows tuning the particle morphology, size, and crystallinity, but requires toxic and hazardous chemicals. Bioinspired synthetic protocols have shown promise to minimize environmental impact, but biological protocols for the synthesis of Ag NPs lack control on the morphology and crystallinity. This review briefly compiles the chemical synthesis of Ag NPs and contrasts it with "green" protocols based on…

Antifungalmedicine.drug_classChemistryeducationtechnology industry and agricultureNanoparticleNanotechnology02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesChemical synthesisSilver nanoparticle0104 chemical sciencesCatalysisInorganic ChemistryCrystallinitymedicineSurface modification0210 nano-technologyhealth care economics and organizationsDalton transactions (Cambridge, England : 2003)
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Identification of Biphenyl-Based Hybrid Molecules Able To Decrease the Intracellular Level of Bcl-2 Protein in Bcl-2 Overexpressing Leukemia Cells

2009

With the aim of enhancing the structural complexity and diversity of an existing collection of bi- and terphenyl compounds, we synthesized hybrid molecules comprising of spirocyclic ketones (a complexity-bearing core) and bi/terphenyls (privileged fragments). Compounds 1, 3, 4, and 6 showed well-defined activity on apoptosis and differentiation, making them potential leads for development as new anticancer agents and chemical probes to study signaling networks in neoplastic cells.

Antineoplastic AgentsApoptosisHL-60 CellsChemical synthesisStructure-Activity RelationshipLeukemia Myelogenous Chronic BCR-ABL PositiveTerphenyl CompoundsDrug DiscoverymedicineHumansSpiro CompoundsChemistryBiphenyl CompoundsCell DifferentiationBiological activityKetonesmedicine.diseaseIn vitroLeukemiaProto-Oncogene Proteins c-bcl-2BiochemistryApoptosisCell cultureMolecular MedicineTerphenyl CompoundsK562 CellsIntracellularJournal of Medicinal Chemistry
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Synthesis and evaluation of diverse thio avarol derivatives as potential UVB photoprotective candidates.

2007

Semisynthesis of 13 new thio avarol derivatives (4-16) and in vitro evaluation on the photodamage response induced by UVB irradiation are described. Their ability to inhibit NF-kappaB activation and TNF-alpha generation in HaCaT cells as well as their antioxidant capacity in human neutrophils has also been studied. Among them we have identified two monophenyl thio avarol derivatives (4-5) lacking cytotoxicity which can be considered promising UVB photoprotective agents through the potent inhibition of NF-kappaB activation with a mild antioxidant pharmacological profile.

AntioxidantMagnetic Resonance SpectroscopyNeutrophilsPhotochemistryUltraviolet Raysmedicine.medical_treatmentChemistry PharmaceuticalClinical BiochemistryMolecular ConformationPharmaceutical ScienceThio-BiochemistryChemical synthesisAntioxidantsCell Line TumorDrug DiscoverymedicineHumansCytotoxicityMolecular Biologyintegumentary systemChemistryTumor Necrosis Factor-alphaOrganic ChemistryNF-kappa BSemisynthesisIn vitroHaCaTmedicine.anatomical_structureBiochemistryModels ChemicalDrug DesignMolecular MedicineKeratinocyteReactive Oxygen SpeciesSesquiterpenesBioorganicmedicinal chemistry letters
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Synthesis and characterization of some dibutylbis{5-[(E)-2-(aryl)-1-diazenyl]-2-hydroxybenzoato}tin(IV) compounds. Toxicity studies of di- and tri-or…

2003

The preparation and spectroscopic characterization of some complexes of the type Bu2Sn(LH)2 (LH = 5-[(E)-2-(aryl)-1-diazenyl]-2-hydroxybenzoate) are reported. On the basis of spectroscopic evidence (1H, 13C, 119Sn NMR, IR and 119mSn Mossbauer) the compounds were judged to adopt the usual dicarboxylato structural type with a skew trapezoidal arrangement. This was further confirmed by X-ray crystallography in the case of Bu2Sn(L5H)2 (L5H = 5-[(E)-2-(4-chlorophenyl)-1-diazenyl]-2-hydroxybenzoate). Toxicity studies of the di- and tri-organotin compounds on the second larval instar of Aedes aegypti mosquito larvae are reported. Copyright © 2003 John Wiley & Sons, Ltd.

Azo compoundbiologyStereochemistryArylGeneral ChemistryAedes aegyptiCrystal structurebiology.organism_classificationChemical synthesisInorganic Chemistrychemistry.chemical_compoundchemistryToxicityInstarCarboxylateApplied Organometallic Chemistry
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Solution versus Fluorous versus Solid-Phase Synthesis of 2,5-Disubstituted 1,3-Azoles. Preliminary Antibacterial Activity Studies

2009

A small library of compounds with an oxa(thia)zole scaffold and structural diversity in both positions 2 and 5 has been synthesized. Double acylation of a protected glycine affords intermediate α-amido-β-ketoesters, which in turn can be dehydrated to afford 1,3-oxazoles or reacted with Lawesson’s reagent to furnish 1,3-thiazoles. This procedure was designed with its adaptation to fluorous techniques in mind. Thus, when a protected glycine with a fluorous tag in the ester moiety is used as a starting material, the synthesis can be easily completed without column chromatography purification of intermediate compounds with good to excellent yields, thus affording a suitable entry to the prepara…

AzolesStaphylococcus aureusANTIBACTERIAL ACTIVITYDrug Evaluation PreclinicalMicrobial Sensitivity TestsChemical synthesisSmall Molecule LibrariesAcylationchemistry.chemical_compoundSolid-phase synthesisColumn chromatographyAZOLESOrganic chemistryMoietyAntibacterial agentChemistryOrganic ChemistryCiencias QuímicasFLUOROUSCombinatorial chemistryAnti-Bacterial AgentsSolutionsQuímica OrgánicaMolecular ProbesSOLID-PHASELawesson's reagentAntibacterial activityCIENCIAS NATURALES Y EXACTAS
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Synthesis and in vitro antimicrobial activities of new (cyano-NNO-azoxy) pyrazole derivatives

2011

The antibacterial and antifungal activity of a series of products, in which the 1,5-dimethyl-4-(cyano- NNO-azoxy)pyrazol-3-yl and 1,3-dimethyl-4-(cyano-NNO-azoxy)pyrazol-5-yl moieties were linked to pyridine, pyrazole, isoxazole, thiophene and the furan ring, were examined. No molecule displayed activity against the Gram-negative bacteria tested. Conversely, some compounds displayed activity against two Staphylococcus aureus strains, including the methicillin resistant strain. All compounds displayed interesting antifungal activity, the most active compound of the series being the thiophene derivative 7a. This compound’s activity against Candida krusei and Candida glabrata (MIC = 0.25 and 0…

AzoxyStaphylococcus aureusAntifungal AgentsStereochemistryClinical BiochemistryPharmaceutical ScienceMicrobial Sensitivity TestsPyrazoleBiochemistryChemical synthesisAntifungal activity Pyrazole Azole sistance Cyano-NNO-azoxy Thiophenechemistry.chemical_compoundAnti-Infective AgentsThiopheneCandida kruseiNitrilesDrug DiscoveryThiopheneAntifungal activityIsoxazoleAntifungal activity; Pyrazole; Azole resistance; Cyano-NNO-azoxy; Thiophene.Molecular BiologyCandidaMolecular StructurebiologyCandida glabrataOrganic ChemistryBiological activitybiology.organism_classificationSettore CHIM/08 - Chimica FarmaceuticachemistryCyano-NNO-azoxyPyrazoleAzole resistancePyrazolesMolecular MedicineAzo Compounds
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Preparation and Characterization of P2 BCh Ring Systems (Ch=S, Se) and Their Reactivity with N-Heterocyclic Carbenes

2018

Four-membered rings with a P2BCh core (Ch = S, Se) have been synthesized via reaction of phosphinidene chalcogenide (Ar*P=Ch) and phosphaborene (Mes*P=BNR2). The mechanistic pathways towards these rings are explained by detailed computational work that confirmed the preference for the formation of P–P, not P–B, bonded systems, which seems counterintuitive given that both phosphorus atoms contain bulky ligands. The reactivity of the newly synthesized heterocycles, as well as that of the known (RPCh)n rings (n = 2, 3), was probed by the addition of Nheterocyclic carbenes, which revealed that all investigated compounds can act as sources of low-coordinate phosphorus species. peerReviewed

BOND COVALENT RADIIChalcogenidePHOSPHINIDENE ADDUCTSSULFURchemistry.chemical_element010402 general chemistryRing (chemistry)ION ABSTRACTION01 natural sciencesMedicinal chemistryCatalysischemistry.chemical_compoundELEMENTSmain-group heterocyclesReactivity (chemistry)N-heterocyclic carbenesMETHYLENEPHOSPHINEta116epäorgaaniset yhdisteetphosphinidene chalcogenidesheterocycleskemiallinen synteesiphosphaborenes010405 organic chemistryPhosphorusOrganic ChemistryGeneral ChemistryREAGENT0104 chemical sciencesCharacterization (materials science)PHOSPHORUSchemistryPhosphinideneinorganic compoundsSULFURIZATIONchemical synthesisX-RAY-STRUCTUREChemistry - A European Journal
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Acene-type donors bearing one 1,3-dithiole ring

1999

Abstract A series of acene-type donors bearing only one 1,3-dithiole ring have been synthesized by following a Wittig-Horner reaction from 7 H -benz[ d,e ]anthracen-7-one and several phosphonate esters. The excellent donor properties have been studied using both experimental techniques and quantum-chemical calculations and reveal that the extraction of the first electron in the oxidation process occurs from the dithiole ring (0.42 e) and the acene unit (0.58 e).

Bearing (mechanical)StereochemistryChemistryMechanical EngineeringMetals and AlloysElectron donorCondensed Matter PhysicsRing (chemistry)Chemical synthesisPhosphonateMedicinal chemistryElectronic Optical and Magnetic Materialslaw.inventionchemistry.chemical_compoundMechanics of MaterialslawMaterials ChemistryMoleculeAceneUnit (ring theory)Synthetic Metals
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Synthesis and Biological Properties of Benzothiazole, Benzoxazole, and Chromen-4-one Analogues of the Potent Antitumor Agent 2-(3,4-Dimethoxyphenyl)-…

2008

New fluorinated 2-aryl-benzothiazoles, -benzoxazoles, and -chromen-4-ones have been synthesized and their activity against MCF-7 and MDA 468 breast cancer cell lines compared with the potent antitumor benzothiazole 5. Analogues such as 9a, b and 12a, d yielded submicromolar GI50 values in both cell lines; however, none of the new compounds approached 5 in terms of antitumor potency. For 5, binding to the aryl hydrocarbon receptor appeared to be necessary but not sufficient for growth inhibition.

BenzoxazolesBicyclic moleculebiologyStereochemistryCell CycleAntineoplastic AgentsBreast NeoplasmsBenzoxazoleAryl hydrocarbon receptorChemical synthesisIn vitroStructure-Activity Relationshipchemistry.chemical_compoundReceptors Aryl HydrocarbonchemistryBenzothiazoleCell Line TumorDrug Discoverybiology.proteinHumansMolecular MedicineStructure–activity relationshipBenzopyransBenzothiazolesGrowth inhibitionJournal of Medicinal Chemistry
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