Search results for "ANGELICIN"

showing 10 items of 13 documents

Pyrano[2,3-e]isoindol-2-ones, new angelicin heteroanalogues

2009

A convenient synthesis of the pyrano[2,3-e]isoindol-2-one ring system, an heteroanalogue of angelicin, is reported. Our synthetic approach consists of the annelation of the pyran ring on the isoindole moiety using 5-dialkylamino- or 5-hydroxymethylene intermediates as building blocks. The photoantiproliferative activity of the new derivatives was studied. Some of them bearing the benzyl group at the 8 position were active with IC(50) in the micromolar range. Cell cytotoxicity involves apoptosis, alteration of cell cycle profile and membrane photodamage.

AnnulationPyrano-isoindolesStereochemistryChemistry PharmaceuticalClinical BiochemistryPharmaceutical ScienceApoptosisIsoindolesRing (chemistry)BiochemistryChemical synthesisInhibitory Concentration 50Jurkat CellsStructure-Activity Relationshipchemistry.chemical_compoundAngelicinCell Line TumorFurocoumarinsDrug DiscoveryHumansMoietyMolecular BiologyPyransMolecular StructurePyrano-isoindoleChemistryPhotochemotherapeutic activityOrganic ChemistryPyrano-isoindoles; Angelicin heteroanalogues; Photochemotherapeutic activity; ApoptosisSettore CHIM/08 - Chimica FarmaceuticaAngelicin heteroanaloguesOxygenModels ChemicalPyranDrug DesignBenzyl groupMolecular MedicineK562 CellsIsoindoleAngelicin heteroanalogueBioorganic & Medicinal Chemistry Letters
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Synthesis of the New Ring System 2-Oxo-[1,4]oxazino[3,2-e]indole, Heteroanalogue of Angelicin

2009

A convenient synthesis of the 2-oxo-[1,4]oxazino[3,2-e]indole ring system, an heteroanalogue of Angelicin, is reported. Our synthetic approach consisted of the annelation of the oxazine ring on the indole moiety using 4-amino-5-hydroxy indoles as building blocks. The antiproliferative activity of the new compounds either in the dark or under UVA irradiation was investigated.

Indole testAnnulationStereochemistryOrganic Chemistry1; 4-Oxazinoindoles; 1; 4-Benzoxazines; Angelicin heteroanalogue; 4-Amino-5-hydroxy indoles114-Benzoxazine14-OxazinoindoleRing (chemistry)Biochemistry4-Oxazinoindoles4-Benzoxazineschemistry.chemical_compoundAngelicinchemistryDrug DiscoveryMoiety4-Amino-5-hydroxy indolesUva irradiationAngelicin heteroanalogue
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THIOPYRANO[2,3-E]INDOL-2-ONES: ANGELICIN HETEROANALOGUES WITH POTENT PHOTOANTIPROLIFERATIVE ACTIVITY

2008

A new class of compounds, the thiopyrano[2,3-e]indol-2-ones, bioisosters of the angular furocoumarin angelicin, was synthesized with the aim of obtaining new photochemotherapeutic agents. In particular 7,8-dimethyl-thiopyranoindolone 6c s showed a remarkable phototoxicity and a great dose UVA dependence reaching IC(50) values at submicromolar level. This latter photoinduced a massive apoptosis and a remarkable photodamage to lipids and proteins. Although it did not intercalate DNA, it was able to cause photooxidation of DNA bases.

IndolesStereochemistryDNA damageUltraviolet RaysAngelicinThiopyrano[23-e ]indol-2-oneClinical BiochemistryPharmaceutical ScienceHL-60 CellsApoptosisThiopyrano[2Antiproliferative activityBiochemistryChemical synthesischemistry.chemical_compoundInhibitory Concentration 50Jurkat CellsAngelicinPhotochemotherapeutic agentsFurocoumarinsDrug DiscoveryThiolactoneTumor Cells CulturedHumansPhotosensitizer3-e ]indol-2-onesMolecular BiologyPhotosensitizing AgentsFurocoumarinOrganic ChemistryProteinsBiological activityThiopyrano[2; 3-e ]indol-2-ones; Angelicin; Antiproliferative activity; Photochemotherapeutic agents; ApoptosisDNASettore CHIM/08 - Chimica FarmaceuticaMitochondriachemistryPhotochemotherapeutic agentMolecular MedicineLipid PeroxidationPhototoxicityDNA Damage
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SYNTHESIS OF PYRROLO[3,2-H]QUINOLINONES WITH GOOD PHOTOCHEMOTHERAPEUTIC ACTIVITY AND NO DNA DAMAGE

2010

In the search for new photochemotherapeutic agents, a series of derivatives of the ring system pyrrolo[3,2-h]quinoline--bioisosters of the angular furocoumarin angelicin--were synthesized through a four-step synthetic approach, in reasonable overall yields. Eight of the synthesized derivatives showed a remarkable phototoxicity against a panel of four human tumor cell lines and a great dose UV-A dependence, reaching IC₅₀ values at submicromolar level. The mode of cellular death photoinduced by pyrrolo[3,2-h]quinolines was evaluated through a series of flow cytometric analysis and other tests were performed to clarify their mechanism of action.

PYRROLO[32-H]QUINOLINONESStereochemistryDNA damageClinical BiochemistryPharmaceutical SciencePhosphatidylserinesBiochemistryChemical synthesischemistry.chemical_compoundCell Line TumorFurocoumarinsDrug Discovery2-H]QUINOLINONESmedicineHumansPyrrolesPhotosensitizerMolecular BiologyMembrane Potential MitochondrialPhotosensitizing AgentsPYRROLO[3; 2-H]QUINOLINONES; ANGELICIN HETEROANALOGUES; PHOTOCHEMOTHERAPY; PHOTOTOXICITYFurocoumarinOrganic ChemistryBiological activitySettore CHIM/08 - Chimica FarmaceuticaPHOTOCHEMOTHERAPYPHOTOTOXICITYPYRROLO[3ANGELICIN HETEROANALOGUESMechanism of actionchemistryQuinolinesLactamMolecular Medicinemedicine.symptomReactive Oxygen SpeciesPhototoxicityDNA Damage
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Pyrazolo[3,4-h]quinolines promising photosensitizing agents in the treatment of cancer.

2015

A new series of pyrazolo[3,4-h]quinolines, heteroanalogues of angelicin was conveniently prepared with a broad substitution pattern. A large number of derivatives was obtained and the cellular photocytotoxicity was evaluated in vitro against 5 different human tumor cell lines with GI50 values reaching the nanomolar level (14.52e0.04 mM). Selected compounds were able to photoinduce a massive cell death with the involvement of mitochondria. Their photodamage cellular targets were proteins and lipids and they did not cause any kind of DNA photodamage. This latter event is of considerable importance in the modulation of long term side effects, generally associated with the use of classical furo…

Programmed cell deathPhotodynamic therapy; Antiproliferative activity; Photosensitizing agents; Reactive oxygen species; PUVA therapyPUVA therapymedicine.medical_treatmentPhotodynamic therapyAntineoplastic AgentsAntiproliferative activityPhotodynamic therapy Antiproliferative activity Photosensitizing agents Reactive oxygen species PUVA therapyMitochondrionPhotodynamic therapychemistry.chemical_compoundStructure-Activity RelationshipAngelicinCell Line TumorDrug DiscoverymedicineStructure–activity relationshipHumansCell ProliferationPharmacologyPhotosensitizing AgentsDose-Response Relationship DrugMolecular StructureCell growthOrganic ChemistryGeneral MedicinePhotosensitizing AgentSettore CHIM/08 - Chimica FarmaceuticaFurocoumarinsBiochemistrychemistryQuinolinesPyrazolesDrug Screening Assays AntitumorReactive oxygen speciesEuropean journal of medicinal chemistry
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An efficient synthesis of pyrrolo[3',2':4,5]thiopyrano[3,2-b]pyridin-2-one: a new ring system of pharmaceutical interest

2012

Abstract A series of pyrrolo[3′,2′:4,5]thiopyrano[3,2- b ]pyridin-2-ones 4 was prepared in good yields by reacting enaminoketones with cyanomethylene active compounds such as phenylsulfonylacetonitrile, benzoylacetonitrile, and malononitrile. Derivatives of the title ring system were tested by the National Cancer Institute of Bethesda against a panel of about 60 human tumor cell lines, and one of them showed inhibitory activity against all cancer cell lines reaching on 48% of them GI 50 values at submicromolar level and on the majority of the remaining ones in the low micromolar concentration.

Pyrrolo[3'; 2':4; 5]thiopyrano[3; 2-b]pyridin-2-one; Angelicin; Antiproliferative activity; EnaminoketonesPyrrolo[3'2':45]thiopyrano[32-b]pyridin-2-one Angelicin Antiproliferative activity EnaminoketonesStereochemistryChemistryAngelicinOrganic ChemistryAntiproliferative activityRing (chemistry)Pyrrolo[3'Biochemistry5]thiopyrano[3Settore CHIM/08 - Chimica FarmaceuticaHuman tumorchemistry.chemical_compound2':4EnaminoketonesDrug DiscoveryCancer cell linesMalononitrile2-b]pyridin-2-one
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Pyrrolo[3,2-h]quinazolines as Photochemotherapeutic Agents

2011

Heteroanalogues of angelicin, pyrrolo[3,2-h]quinazolines, were synthesized with the aim of obtaining new potent photochemotherapeutic agents. Many derivatives caused a significant decrease in cell proliferation in several human tumor cell lines after irradiation with UVA light (GI(50) =15.2-0.2 μM). Their phototoxicity effected apoptosis in Jurkat cells with the involvement of mitochondria (as determined by the loss of mitochondrial membrane potential and production of reactive oxygen species) and lysosomes. The phototoxicity of these compounds could be explained by lipid peroxidation.

Pyrrolo[3; 2-h]quinazolines; Angelicin; Photochemotherapeutic AgentsAngelicinUltraviolet RaysApoptosisMitochondrion2-h]quinazolinesBiochemistryJurkat cellsLipid peroxidationStructure-Activity Relationshipchemistry.chemical_compoundAngelicinCell Line TumorFurocoumarinsPhotochemotherapeutic AgentsDrug DiscoveryHumansPyrrolo[32-h]quinazolinePyrrolesPyrrolo[3General Pharmacology Toxicology and PharmaceuticsPharmacologychemistry.chemical_classificationReactive oxygen speciesPhotosensitizing AgentsOrganic ChemistrySettore CHIM/08 - Chimica FarmaceuticachemistryBiochemistryApoptosisCell cultureQuinolinesMolecular MedicineDrug Screening Assays AntitumorReactive Oxygen SpeciesPhototoxicityChemMedChem
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Pyrrolo[3,4-h]quinolinones a new class of photochemotherapeutic agents

2011

Abstract Pyrrolo[3,4- h ]quinolin-2-ones were synthesized as nitrogen isosters of the angular furocoumarin angelicin, with the aim of obtaining new photochemotherapeutic agents with increased antiproliferative activity and lower undesired toxic effects. A versatile synthetic pathway was approached to allow the isolation of derivatives of the new ring system with a good substitution pattern on the pyrrole moiety. Photobiological screenings of the new compounds revealed a potent phototoxic effect and a great UVA dose dependence, reaching IC 50 values at submicromolar level. The induced cellular photocytotoxicity was related to apoptosis with the involvement of mitochondria and lysosomes, alte…

Pyrrolo[3; 4-h]quinolinones; Angelicin heteroanalogues; Photochemotherapeutic agents; PhototoxicityStereochemistryClinical BiochemistryMembrane lipid peroxidationPharmaceutical ScienceHL-60 CellsPhosphatidylserinesQuinolonesMitochondrionBiochemistryPhototoxicityJurkat CellsStructure-Activity Relationshipchemistry.chemical_compoundPhotochemotherapeutic agentsAngelicinCell Line TumorDrug DiscoveryHumansMoietyFluorometryPyrrolesPyrrolo[3Molecular BiologyPyrrolePyrrolo[34-h]quinolinoneFurocoumarinCell CycleOrganic Chemistry4-h]quinolinonesDNAPhotochemical ProcessesSettore CHIM/08 - Chimica FarmaceuticaAngelicin heteroanaloguesPhotochemotherapeutic agentPhotochemotherapychemistryApoptosisMolecular MedicineLipid PeroxidationPhototoxicityAngelicin heteroanalogueSubcellular FractionsBioorganic & Medicinal Chemistry
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PYRROLO[3,2-H]QUINAZOLINE AS PHOTOCHEMOTHERAPEUTIC AGENTS

2010

QUINAZOLINEANGELICIN; QUINAZOLINE; PHOTOCHEMOTHERAPYSettore CHIM/08 - Chimica FarmaceuticaANGELICINPHOTOCHEMOTHERAPY
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Pyrrolo[2,3-h]quinolinones: A new ring system with potent photoantiproliferative activity

2006

A new class of compounds, the pyrrolo[2,3-h]quinolin-2-ones, nitrogen isosters of the angular furocoumarin Angelicin, was synthesized with the aim of obtaining new photochemotherapeutic agents with increased antiproliferative activity and lower undesired toxic effects than the lead compound. Two synthetic pathways were approached to allow the isolation both of the dihydroderivatives 10-17 and of the aromatic ring system 23. Compounds 10-17 showed a remarkable phototoxicity and a great UVA dose dependence reaching IC(50) values at submicromolar level. Intracellular localization of these compounds has been evaluated by means of fluorescence microscopy using tetramethylrhodamine methyl ester a…

Ultraviolet RaysStereochemistryFibrosarcomaClinical BiochemistryPharmaceutical ScienceHL-60 CellsAdenocarcinomaQuinolonesBiochemistryChemical synthesisMass Spectrometrychemistry.chemical_compoundAngelicinangelicinDrug DiscoverymedicineHumansMolecular BiologyChromatography High Pressure LiquidCell ProliferationFluorescent DyesPhotosensitizing AgentsRhodaminesChemistryFurocoumarinErythrocyte MembraneOrganic ChemistryAcridine orangeProteinsDNAAcridine OrangeIntercalating AgentsMitochondriapyrroloquinolinoneCross-Linking ReagentsMicroscopy FluorescencePhotochemotherapyMechanism of actionMolecular MedicineLipid Peroxidationmedicine.symptomantitumour activityLysosomesPhototoxicityLead compoundDNA DamageMacromolecule
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