Search results for "Assays"

showing 10 items of 546 documents

New 3-Aryl-2-(2-Thienyl)acrylonitriles with High Activity against Hepatoma Cells

2021

New 2-(thien-2-yl)-acrylonitriles with putative kinase inhibitory activity were prepared and tested for their antineoplastic efficacy in hepatoma models. Four out of the 14 derivatives were shown to inhibit hepatoma cell proliferation at (sub-)micromolar concentrations with IC50 values below that of the clinically relevant multikinase inhibitor sorafenib, which served as a reference. Colony formation assays as well as primary in vivo examinations of hepatoma tumors grown on the chorioallantoic membrane of fertilized chicken eggs (CAM assay) confirmed the excellent antineoplastic efficacy of the new derivatives. Their mode of action included an induction of apoptotic capsase-3 activity, whil…

0301 basic medicinelcsh:Chemistry0302 clinical medicinelcsh:QH301-705.5SpectroscopyMolecular StructureKinaseChemistryLiver NeoplasmsGeneral MedicineHep G2 CellshepatomaComputer Science ApplicationsCAM assayMolecular Docking SimulationChorioallantoic membraneBiochemistry030220 oncology & carcinogenesistyrphostinTyrosine kinasemedicine.drugSorafenibCarcinoma HepatocellularthiopheneThiophenesCatalysisArticleInorganic ChemistryVEGFR inhibition03 medical and health sciencesStructure-Activity RelationshipIn vivomedicineHumansPhysical and Theoretical ChemistryMode of actionMolecular BiologyProtein Kinase InhibitorsCell ProliferationAcrylonitrileDose-Response Relationship DrugOrganic Chemistrymolecular dockingVascular Endothelial Growth Factor Receptor-2anticancer drugs030104 developmental biologylcsh:Biology (General)lcsh:QD1-999ApoptosisDocking (molecular)Drug Screening Assays AntitumorInternational Journal of Molecular Sciences
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Gamma-Delta CAR-T Cells Show CAR-Directed and Independent Activity Against Leukemia

2020

Autologous T cells engineered to express a chimeric antigen receptor (CAR) against the CD19 antigen are in the frontline of contemporary hemato-oncology therapies, leading to high remission rates in B-cell malignancies. Although effective, major obstacles involve the complex and costly individualized manufacturing process, and CD19 target antigen loss or modulation leading to resistant and relapse following CAR therapy. A potential solution for these limitations is the use of donor-derived γδT cells as a CAR backbone. γδT cells lack allogenecity and are safely used in haploidentical transplants. Moreover, γδT cells are known to mediate natural anti-tumor responses. Here, we describe a 14-da…

0301 basic medicinelcsh:Immunologic diseases. Allergymedicine.medical_treatmentImmunologyCell Culture TechniquesPriming (immunology)Mice SCIDImmunotherapy AdoptiveCD1903 medical and health sciencesMice0302 clinical medicineAntigenMice Inbred NODTransduction GeneticmedicineAnimalsHumansImmunology and Allergyimmuno oncologyB cell malignanciesOriginal ResearchLeukemiaReceptors Chimeric Antigenbiologychimeric antigen receptorChemistrygamma-delta T cellsReceptors Antigen T-Cell gamma-deltamedicine.diseaseXenograft Model Antitumor AssaysChimeric antigen receptorLeukemia030104 developmental biologyCytokinemedicine.anatomical_structureCell cultureCancer researchbiology.proteinBone marrowlcsh:RC581-607Genetic Engineering030215 immunologyFrontiers in Immunology
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Molecular Signatures Associated with Treatment of Triple-Negative MDA-MB231 Breast Cancer Cells with Histone Deacetylase Inhibitors JAHA and SAHA

2017

Jay Amin Hydroxamic Acid (JAHA; N8-ferrocenylN1-hydroxy-octanediamide) is a ferrocene-containing analogue of the histone deacetylase inhibitor (HDACi) suberoylanilide hydroxamic acid (SAHA). JAHA’s cytotoxic activity on MDA-MB231 triple negative breast cancer (TNBC) cells at 72 h has been previously demonstrated with an IC50 of 8.45 M. JAHA’s lethal effect was found linked to perturbations of cell cycle, mitochondrial activity, signal transduction and autophagy mechanisms. In order to glean novel insights on how MDA-MB231 breast cancer cells respond to the cytotoxic effect induced by JAHA, and to compare the biological effect with the related compound SAHA, we have employed a combination of…

0301 basic medicinemedicine.drug_classAntineoplastic AgentsTriple Negative Breast NeoplasmsBiologyHydroxamic AcidsToxicologyStructure-Activity Relationship03 medical and health sciences0302 clinical medicineCell Line TumormedicineHumansCytotoxic T cellFerrous CompoundsSettore BIO/06 - Anatomia Comparata E Citologiaskin and connective tissue diseasesVorinostatTriple-negative breast cancerVorinostatDose-Response Relationship DrugHistone deacetylase inhibitorComputational BiologyGeneral MedicineTriple Negative Breast NeoplasmsCell cycleHistone Deacetylase InhibitorsSettore BIO/18 - Genetica030104 developmental biologyBiochemistryCell culture030220 oncology & carcinogenesisCancer researchHistone deacetylaseJAHA Comet assay MDA-MB231 Histone Deacetylase InhibitorsDrug Screening Assays Antitumormedicine.drug
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Prospecting for cytotoxic and antiprotozoal 4-aryl-4H-chromenes and 10-aryldihydropyrano[2,3-f]chromenes.

2018

Different studies reported that genetic predisposition or metabolic dysfunction are the risk factors for cancer. Infectious parasitic diseases were listed among factors that predispose to cancer. Because of the resemblance between the life cycle of cancer cells and some parasites, this study aimed to prepare pyran derivatives with cytotoxic and antiprotozoal potencies. Therefore, 7 chromenes, 10 pyranocoumarins, and an unexpected intermediate were obtained from a multi-reagent one-pot reaction. These compounds were evaluated for their cytotoxicity on sensitive and resistant leukemia cancer cells lines and against two protozoan parasites, namely Trypanosoma cruzi and Leishmania amazonensis a…

0301 basic medicinemedicine.drug_classAntiparasiticTHP-1 CellsTrypanosoma cruziAntiprotozoal AgentsPharmaceutical ScienceAntineoplastic AgentsApoptosisPharmacology03 medical and health sciencesStructure-Activity RelationshipParasitic Sensitivity TestsDrug DiscoverymedicineTumor Cells CulturedCytotoxic T cellHumansBenzopyransTrypanosoma cruziCytotoxicityAmastigoteCell ProliferationLeishmaniabiologyDose-Response Relationship DrugMolecular StructureChemistryCancerCell Cycle Checkpointsbiology.organism_classificationmedicine.disease030104 developmental biologyCancer cellAntiprotozoalDrug Screening Assays AntitumorArchiv der Pharmazie
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Inhibition of cell migration and induction of apoptosis by a novel class II histone deacetylase inhibitor, MCC2344.

2020

Epigenetic modifiers provide a new target for the development of anti-cancer drugs. The eraser histone deacetylase 6 (HDAC6) is a class IIb histone deacetylase that targets various non-histone proteins such as transcription factors, nuclear receptors, cytoskeletal proteins, DNA repair proteins, and molecular chaperones. Therefore, it became an attractive target for cancer treatment. In this study, virtual screening was applied to the MicroCombiChem database with 1162 drug-like compounds to identify new HDAC6 inhibitors. Five compounds were tested in silico and in vitro as HDAC6 inhibitors. Both analyses revealed 1-cyclohexene-1-carboxamide, 2-hydroxy-4,4-dimethyl-N-1-naphthalenyl-6-oxo- (MC…

0301 basic medicinemedicine.drug_classDNA repairAntineoplastic AgentsApoptosisHistone Deacetylase 6MicrotubulesEpigenesis Genetic03 medical and health sciences0302 clinical medicineCell MovementTubulinNeoplasmsCyclohexenesmedicineAnimalsHumansNeoplasm InvasivenessEpigeneticsHSP90 Heat-Shock ProteinsTranscription factorZebrafishPharmacologyChemistryHistone deacetylase inhibitorCell migrationAcetylationHDAC6Xenograft Model Antitumor AssaysCell biologyHistone Deacetylase Inhibitors030104 developmental biologyCell culture030220 oncology & carcinogenesisMCF-7 CellsHistone deacetylaseApoptosis Regulatory ProteinsPharmacological research
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Microenvironment modulation and enhancement of antilymphoma therapy by the heparanase inhibitor roneparstat

2018

0301 basic medicinemedicine.medical_specialtyCancer ResearchLymphomaMice03 medical and health sciences0302 clinical medicineHematology; Oncology; Cancer ResearchInternal medicineTumor MicroenvironmentmedicineAnimalsHumansHeparanase030212 general & internal medicineEnzyme InhibitorsGlucuronidaseHematologyChemistryGeneral MedicineHematologyXenograft Model Antitumor AssaysNeoplasm Proteins030104 developmental biologyOncologyCancer research
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Synthesis and cytotoxic activity of new artemisinin hybrid molecules against human leukemia cells

2017

A series of new artemisinin-derived hybrids which incorporate cholic acid moieties have been synthesized and evaluated for their antileukemic activity against sensitive CCRF-CEM and multidrug-resistant CEM/ADR5000 cells. The new hybrids 20-28 showed IC50 values in the range of 0.019µM-0.192µM against CCRF-CEM cells and between 0.345µM and 7.159µM against CEM/ADR5000 cells. Amide hybrid 25 proved the most active compound against both CCRF-CEM and CEM/ADR5000 cells with IC50 value of 0.019±0.001µM and 0.345±0.031µM, respectively. A relatively low cross resistance to hybrids 20-28 in the range of 5.7-fold to 46.1-fold was measured. CEM/ADR5000 cells showed higher resistance than CCRF-CEM to al…

0301 basic medicinevirusesClinical BiochemistryPharmaceutical ScienceAntineoplastic AgentsBiochemistryAntileukemic agentStructure-Activity Relationship03 medical and health scienceschemistry.chemical_compound0302 clinical medicineimmune system diseaseshemic and lymphatic diseasesAmideDrug DiscoveryTumor Cells CulturedmedicineHumansCytotoxic T cellDoxorubicinArtemisininMolecular BiologyIC50Cross-resistanceCell ProliferationLeukemiaDose-Response Relationship DrugMolecular StructureOrganic ChemistryCholic acidhemic and immune systemsArtemisinins030104 developmental biologyBiochemistrychemistry030220 oncology & carcinogenesisMolecular MedicineDrug Screening Assays Antitumormedicine.drugBioorganic & Medicinal Chemistry
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A Bimolecular Multicellular Complementation System for the Detection of Syncytium Formation: A New Methodology for the Identification of Nipah Virus …

2019

Fusion of viral and cellular membranes is a key step during the viral life cycle. Enveloped viruses trigger this process by means of specialized viral proteins expressed on their surface, the so-called viral fusion proteins. There are multiple assays to analyze the viral entry including those that focus on the cell-cell fusion induced by some viral proteins. These methods often rely on the identification of multinucleated cells (syncytium) as a result of cell membrane fusions. In this manuscript, we describe a novel methodology for the study of cell-cell fusion. Our approach, named Bimolecular Multicellular Complementation (BiMuC), provides an adjustable platform to qualitatively and quanti…

0301 basic medicinevirusesmembrane fusionlcsh:QR1-502virusNipah virusBiologyGiant Cells01 natural scienceslcsh:MicrobiologySmall Molecule Libraries03 medical and health sciencesVirus entryViral envelopeViral life cycleViral entryVirologyDrug DiscoveryHumansSyncytiumDrug discoveryBrief ReportbiomolèculesHigh-throughput screeningLipid bilayer fusionVirus InternalizationFusion proteinHigh-Throughput Screening Assays0104 chemical sciencesCell biologyBimolecular complementation010404 medicinal & biomolecular chemistryMulticellular organismHEK293 Cells030104 developmental biologyInfectious DiseasesViruses
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The molecular identification of organic compounds in the atmosphere: state of the art and challenges.

2015

SSCI-VIDE+ATARI:CARE+BNO:BDA; International audience

2-DIMENSIONAL GAS-CHROMATOGRAPHYChemistryCAPILLARY ELECTROPHORESIS/MASS SPECTROMETRYAtmosphereION-CYCLOTRON RESONANCENanotechnologyGeneral Chemistry[CHIM.CATA]Chemical Sciences/CatalysisPERFORMANCE LIQUID-CHROMATOGRAPHY[SDE.ES]Environmental Sciences/Environmental and SocietyHigh-Throughput Screening AssaysAtmospherePOLYCYCLIC AROMATIC-HYDROCARBONSHUMIC-LIKE SUBSTANCESChemistryPULSED-AMPEROMETRIC DETECTIONANION-EXCHANGE CHROMATOGRAPHYEnvironmental chemistryFLIGHT MASS-SPECTROMETRY540 ChemistryOrganic ChemicalsAIRBORNE PARTICULATE MATTERMolecular identificationEnvironmental MonitoringChemical reviews
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SYNTHESIS AND ANTITUMOR ACTIVITY OF 2,5-BIS(3'-INDOLYL)-FURANS AND 3,5-BIS(3'-INDOLIY)-ISOXAZOLES, NORTOPSENTIN ANALOGUES

2010

Abstract A series of novel 2,5-bis(3′-indolyl)furans and 3,5-bis(3′-indolyl)isoxazoles were synthesized as antitumor agents. The antiproliferative activity was evaluated in vitro toward diverse human tumor cell lines. Initially 5 isoxazoles and 3 furan derivatives were tested against a panel of 10 human tumor cell lines and the most active derivatives 3c and 4a were selected to be evaluated in an extended panel of 29 cell lines. By exhibiting mean IC50 values of 17.4 μg/mL (3a) and 20.5 μg/mL (4c), in particular 4c showed a high level of tumor selectivity toward the 29 cell lines.

35-BIS(3'-INDOLIY)-ISOXAZOLESIndolesStereochemistry3Clinical Biochemistry2Pharmaceutical ScienceAntineoplastic AgentsBiochemistryChemical synthesis25-BIS(3'-INDOLYL)-FURANSchemistry.chemical_compound2; 5-BIS(3'-INDOLYL)-FURANS; 3; 5-BIS(3'-INDOLIY)-ISOXAZOLES; NORTOPSENTIN; ANTITUMOR ACTIVITYFuranCell Line TumorNeoplasmsDrug DiscoveryHumans5-BIS(3'-INDOLIY)-ISOXAZOLESCytotoxicityFurans5-BIS(3'-INDOLYL)-FURANSMolecular BiologyAntitumor activityAlkaloidOrganic ChemistryBiological activityNORTOPSENTINIsoxazolesSettore CHIM/08 - Chimica FarmaceuticaIn vitroANTITUMOR ACTIVITYchemistryCell cultureMolecular MedicineDrug Screening Assays Antitumor
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