Search results for "Apoptosis."

showing 10 items of 1794 documents

Histone deacetylase inhibitors induce in human hepatoma HepG2 cells acetylation of p53 and histones in correlation with apoptotic effects

2007

This report shows that histone deacetylase inhibitors (HDACIs) induced apoptosis in human hepatoma HepG2 cells in a dose- and time-dependent manner. Trichostatin A (TSA), ITF2357 and suberoylanilide hydroxamic acid (SAHA), which were very effective agents, caused apoptotic effects after a lag phase of 12-16 h. In order to elucidate the mechanism of HDACIs action in HepG2 cells we have studied the effects of TSA, ITF2357 and SAHA on acetylation of p53 and histones H2A, H2B, H3 and H4. It was observed that HDACIs rapidly induced acetylation of these proteins, being the effects clearly visible already at 30 min of treatment at the same doses which caused apoptosis. Analysis of the immunocomple…

Cancer ResearchProgrammed cell deathCarcinoma Hepatocellularmedicine.drug_classAntineoplastic AgentsApoptosisBiologyHydroxamic AcidsHistonesCell Line TumorSettore BIO/10 - BiochimicamedicineHumansBenzothiazolesEnzyme InhibitorsRNA Small InterferingHistone AcetyltransferasesVorinostatHistone deacetylase inhibitors acetylation p53 histones apoptosis hepatoma cells.Liver NeoplasmsHistone deacetylase inhibitorAcetylationProto-Oncogene Proteins c-mdm2Molecular biologyHistone Deacetylase InhibitorsTrichostatin AHistoneOncologyPCAFAcetylationbiology.proteinHistone deacetylaseTumor Suppressor Protein p53DNA DamageToluenemedicine.drugInternational Journal of Oncology
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Histone deacetylase inhibition by valproic acid down-regulates c-FLIP/CASH and sensitizes hepatoma cells towards CD95-and TRAIL receptor-mediated apo…

2005

Hepatocellular carcinoma (HCC) is highly resistant to chemotherapy, leading to a poor prognosis of advanced disease. Inhibitors of histone deacetylase (HDACi) induce re-differentiation in tumor cells and thereby re-establish sensitivity towards apoptotic stimuli. HDACi are entering the clinical stage of tumor treatment, and several substances are currently being tested in clinical trials to prove their efficacy in the treatment of leukemias and solid tumors. In this study, we investigated the impact of the HDACi valproic acid (VA) on TRAIL- and CD95-mediated apoptosis in hepatoma cells, as well as its sensitizing effect on a chemotherapeutic agent. Treatment of HepG2 cells with VA increased…

Cancer ResearchProgrammed cell deathCarcinoma Hepatocellularmedicine.medical_treatmentCellCASP8 and FADD-Like Apoptosis Regulating ProteinDown-RegulationCaspase 3ApoptosisBiologyReceptors Tumor Necrosis FactorTNF-Related Apoptosis-Inducing LigandAntineoplastic Combined Chemotherapy ProtocolsmedicineHumansfas ReceptorEpirubicinChemotherapyMembrane GlycoproteinsCaspase 3Tumor Necrosis Factor-alphaValproic AcidLiver NeoplasmsIntracellular Signaling Peptides and ProteinsGeneral MedicineCell cycleFas receptorHistone Deacetylase Inhibitorsmedicine.anatomical_structureOncologyApoptosisDrug Resistance NeoplasmCaspasesCancer researchHistone deacetylaseApoptosis Regulatory Proteins
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Sodium phenylbutyrate induces apoptosis in human retinoblastoma Y79 cells: The effect of combined treatment with the topoisomerase I-inhibitor topote…

2001

Our results demonstrate that sodium phenylbutyrate, a compound with a low degree of toxicity, exerted a cytotoxic effect on human retinoblastoma Y79 cells in a time- and dose-dependent manner. Treatment of Y79 cells for 72 h with phenylbutyrate reduced cell viability by 63% at 2 mM and 90% at 4 mM. Cell death caused by phenylbutyrate exhibited the typical features of apoptosis, as shown by light and fluorescent microscopy. Western blot analysis demonstrated that exposure of Y79 cells to phenylbutyrate decreased the level of the antiapoptotic factor Bcl-2 and induced the activation of caspase-3, a key enzyme in the execution phase of apoptosis. Moreover, treatment with phenylbutyrate markedl…

Cancer ResearchProgrammed cell deathCell SurvivalBlotting WesternApoptosisPhenylbutyrateHistonesSettore BIO/10 - BiochimicamedicineTumor Cells CulturedHumansretinoblastoma apoptosis sodium phenylbutirateViability assayEnzyme InhibitorsbiologyCaspase 3TopoisomeraseRetinoblastomaSodium phenylbutyrateAcetylationDrug SynergismCell cyclePhenylbutyrateseye diseasesEnzyme ActivationOncologyProto-Oncogene Proteins c-bcl-2ApoptosisCaspasesbiology.proteinCancer researchTopotecanDrug Therapy CombinationTopoisomerase I InhibitorsTumor Suppressor Protein p53Topotecanmedicine.drug
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The effect of 3-aminobenzamide, inhibitor of poly(ADP-ribose) polymerase, on human osteosarcoma cells

2003

This study demonstrates that in human osteosarcoma cells treatment with 3-aminobenzamide (3-AB), a potent inhibitor of poly(ADP-ribose) polymerase (PARP), induces morphological and biochemical features of differentiation, the duration of which depends on whether or not the normal RB gene is expressed. In Saos-2 cells expressing a non-functional Rb protein, 3-AB treatment induced the formation of transient, short dendritic-like protrusions. In RB-transfected-Saos-2 cells (a clone previously generated in our laboratory that shows stable expression of wild-type Rb protein), 3-AB induced marked and prolonged changes with the formation of long dendritic-like protrusions and the appearance of ste…

Cancer ResearchProgrammed cell deathCell typeTime FactorsTranscription GeneticCell SurvivalPoly ADP ribose polymeraseCellular differentiationBlotting WesternApoptosisDNA FragmentationPoly(ADP-ribose) Polymerase InhibitorsBiologyTransfectionPolymerase Chain ReactionRetinoblastoma Proteinchemistry.chemical_compoundCell Line TumorProto-Oncogene ProteinsHumansMicroscopy Phase-ContrastRNA MessengerEnzyme Inhibitorsbcl-2-Associated X ProteinOsteosarcomaLamin Type BCaspase 3Reverse Transcriptase Polymerase Chain ReactionCell DifferentiationDendritesCell cycleAlkaline PhosphataseFlow CytometryMolecular biologyChromatinHyaluronan ReceptorsProto-Oncogene Proteins c-bcl-2OncologychemistryApoptosis3-AminobenzamideCaspasesBenzamides3-aminobenzamide osteosarcoma cells PARP activityAlkaline phosphataseInternational Journal of Oncology
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Cell Harvesting Methods Affect Cellular Integrity of Adherent Cells During Apoptosis Detection.

2018

Background/aim Annexin V and propidium iodide (PI) dual staining is commonly applied in bioscience as a method to detect apoptosis. However, excessive handling of adherent cells may interfere with the integrity of plasma membrane and hence impede the accuracy of this method. Here, we exploited PI uptake as an indicator of cell integrity and investigated how cell harvesting methods and solutions involved in common apoptosis detection techniques affected measurement results. Materials and methods Different cell harvesting techniques, staining with PI and flow cytometry were performed. Results Non-fixed scrapped cells revealed significantly higher fractions of PI-positive staining compared to …

Cancer ResearchProgrammed cell deathCellCell Culture TechniquesApoptosis02 engineering and technologyCell Separation010402 general chemistry01 natural sciencesFlow cytometrychemistry.chemical_compoundAnnexinCell Line TumormedicineCell AdhesionHumansTrypsinPropidium iodideAnnexin A5medicine.diagnostic_testStaining and LabelingChemistryGeneral Medicine021001 nanoscience & nanotechnologyFlow Cytometry0104 chemical sciencesStainingCell biologyTrypsinizationmedicine.anatomical_structureOncologyApoptosisBiological Assay0210 nano-technologyPropidiumAnticancer research
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Apoptosis and the liver

2000

Regulation of the homeostatic balance between cell proliferation and programmed cell death, apoptosis, is essential for development and maintenance of multicellular organisms. Apoptosis is a genetically and evolutionarily highly conserved process. Analysis of the molecular mechanisms of apoptosis has led to a better understanding of many human diseases. Notably in cancer, but also in infectious or autoimmune disease, a deficiency in apoptosis is one of the key events in pathophysiology. On the other hand, overefficient apoptosis, as observed in fulminant liver failure, may be equally harmful for the organism indicating that a tight regulation of the apoptotic machinery is essential for surv…

Cancer ResearchProgrammed cell deathCeramideHepatitis Viral HumanDNA damageCellGenes mycApoptosisBiologyReceptors Tumor Necrosis Factorchemistry.chemical_compoundmedicineHumansfas ReceptorLiver DiseasesLiver NeoplasmsIntrinsic apoptosisGenes p53Genes bcl-2Liver TransplantationCell biologymedicine.anatomical_structureLiverchemistryUVB-induced apoptosisApoptosisImmunologyPoly(ADP-ribose) PolymerasesSignal transductionReceptors Transforming Growth Factor betaSeminars in Cancer Biology
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SGK-1 protects kidney cells against apoptosis induced by ceramide and TNF-α

2015

AbstractCeramide regulates several different cellular responses including mechanisms leading to apoptosis. Serum- and glucocorticoid-inducible protein kinase (SGK)-1 is a serine threonine kinase, which activates survival pathways in response to stress stimuli. Recently, we demonstrated an anti-apoptotic role of SGK-1 in human umbilical endothelial cells treated with high glucose. In the present study, since ceramide induces apoptosis by multiple mechanisms in diabetes and its complication such as nephropathy, we aimed to investigate whether SGK-1 may protect even against apoptosis induced by ceramide in kidney cells. Human embryonic kidney (HEK)-293 cells stable transfected with SGK-1 wild …

Cancer ResearchProgrammed cell deathCeramideSettore MED/09 - Medicina InternaDIABETES MELLITUSImmunologyProtein Serine-Threonine KinasesTNF ALPHABiologyCeramidesKidneyTransfectionImmediate-Early ProteinsSettore MED/13 - EndocrinologiaCellular and Molecular Neurosciencechemistry.chemical_compoundHumansSettore MED/49 - Scienze Tecniche Dietetiche ApplicateProtein kinase ASettore MED/04 - Patologia GeneraleSerine/threonine-specific protein kinaseTumor Necrosis Factor-alphaCERAMIDEKinaseHEK 293 cellsKidney metabolismCell BiologyLipid signalingINSULINAPOPTOSIS3. Good healthCell biologyHEK293 CellschemistryINSULIN CERAMIDE DIABETES MELLITUS TNF ALPHA APOPTOSISOriginal ArticleCell Death & Disease
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Lovastatin protects human endothelial cells from killing by ionizing radiation without impairing induction and repair of DNA double-strand breaks.

2006

Abstract Purpose: 3-hydroxy-3-methylglutaryl CoA reductase inhibitors (statins) are frequently used lipid-lowering drugs. Moreover, they are reported to exert pleiotropic effects on cellular stress responses, proliferation, and apoptosis. Whether statins affect the sensitivity of primary human cells to ionizing radiation (IR) is still unknown. The present study aims at answering this question. Experimental Design: The effect of lovastatin on IR-provoked cytotoxicity was analyzed in primary human umbilical vein endothelial cells (HUVEC). To this end, cell viability, proliferation, and apoptosis as well as DNA damage–related stress responses were investigated. Results: The data show that lova…

Cancer ResearchProgrammed cell deathDNA RepairDNA repairDNA damageCell SurvivalApoptosisRadioresistanceRadiation Ionizingpolycyclic compoundsmedicineHumansLovastatinCells CulturedCell Proliferationbiologynutritional and metabolic diseasesEndothelial CellsDose-Response Relationship RadiationDNAMolecular biologyEndothelial stem cellOncologyApoptosisCytoprotectionHMG-CoA reductasebiology.proteinCancer researchlipids (amino acids peptides and proteins)Lovastatinmedicine.drugDNA DamageClinical cancer research : an official journal of the American Association for Cancer Research
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Artesunate induces oxidative DNA damage, sustained DNA double-strand breaks, and the ATM/ATR damage response in cancer cells.

2011

Abstract Artesunate, the active agent from Artemisia annua L. used in the traditional Chinese medicine, is being applied as a first-line drug for malaria treatment, and trials are ongoing that include this drug in cancer therapy. Despite increasing interest in its therapeutic application, the mode of cell killing provoked by artesunate in human cells is unknown. Here, we show that artesunate is a powerful inducer of oxidative DNA damage, giving rise to formamidopyrimidine DNA glycosylase–sensitive sites and the formation of 8-oxoguanine and 1,N6-ethenoadenine. Oxidative DNA damage was induced in LN-229 human glioblastoma cells dose dependently and was paralleled by cell death executed by ap…

Cancer ResearchProgrammed cell deathDNA RepairRAD51Drug Evaluation PreclinicalArtesunateApoptosisCell Cycle ProteinsAtaxia Telangiectasia Mutated ProteinsBiologyProtein Serine-Threonine KinasesModels Biologicalchemistry.chemical_compoundNeoplasmsTumor Cells CulturedHumansDNA Breaks Double-StrandedTumor Suppressor ProteinsMolecular biologyAntineoplastic Agents PhytogenicArtemisininsUp-RegulationNon-homologous end joiningDNA-Binding ProteinsOxidative StressCell killingOncologychemistryArtesunateApoptosisCancer cellHomologous recombinationDNA DamageMolecular cancer therapeutics
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Differential Sensitivity of Malignant Glioma Cells to Methylating and Chloroethylating Anticancer Drugs: p53 Determines the Switch by Regulating xpc,…

2007

Abstract Glioblastoma multiforme is the most severe form of brain cancer. First line therapy includes the methylating agent temozolomide and/or the chloroethylating nitrosoureas [1-(2-chloroethyl)-1-nitrosourea; CNU] nimustine [1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-3-nitrosourea; ACNU], carmustine [1,3-bis(2-chloroethyl)-1-nitrosourea; BCNU], or lomustine [1-(2-chloroethyl)-3-cyclohexyl-1-nitrosourea; CCNU]. The mechanism of cell death after CNU treatment is largely unknown. Here we show that ACNU and BCNU induce apoptosis in U87MG [p53 wild-type (p53wt)] and U138MG [p53 mutant (p53mt)] glioma cells. However, contrary to what we observed previously for temozolomide, chl…

Cancer ResearchProgrammed cell deathDNA repairAntineoplastic AgentsBiologychemistry.chemical_compoundCell Line TumorGliomamedicineHumansRNA NeoplasmRNA Small InterferingneoplasmsCarmustineTemozolomideBrain Neoplasmsorganic chemicalsNimustineDNA NeoplasmDNA Methylationmedicine.diseaseDNA-Binding ProteinsOncologychemistryCell cultureApoptosisCancer researchTumor Suppressor Protein p53GlioblastomaDNA Damagemedicine.drugCancer Research
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