Search results for "Cell line"

showing 10 items of 2924 documents

Cisplatin-induced apoptosis in 43-3B and 27-1 cells defective in nucleotide excision repair

2001

Cisplatin is a highly potent cytotoxic and genotoxic agent used in the chemotherapy of various types of tumors. Its cytotoxic effect is supposed to be due to the induction of intra- and interstrand DNA cross-links which are repaired via the nucleotide excision repair (NER) pathway. Here, we elucidated the mechanism of cisplatin-induced cytotoxicity in mutants derived from CHO-9 cells defective in NER. We compared 43-3B and 27-1 cells deficient for ERCC1 and ERCC3, respectively, with the corresponding wild-type and ERCC1 complemented 43-3B cells. It is shown that cells defective in ERCC1 are more sensitive than cells defective in ERCC3 with regard to cisplatin-induced reproductive cell death…

Programmed cell deathTime FactorsDNA RepairCell SurvivalPoly ADP ribose polymeraseBlotting WesternDown-RegulationApoptosisCHO CellsToxicologyCell LineNecrosisCricetinaeGeneticsmedicineAnimalsDrosophila ProteinsCytotoxic T cellMolecular BiologyCaspaseCisplatinCaspase 8Dose-Response Relationship DrugbiologyCaspase 3ProteinsEndonucleasesMolecular biologyCaspase 9DNA-Binding ProteinsEnzyme ActivationApoptosisCaspasesMutationbiology.proteinCancer researchCisplatinPoly(ADP-ribose) PolymerasesERCC1Nucleotide excision repairmedicine.drugMutation Research/DNA Repair
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MYC and EGR1 synergize to trigger tumor cell death by controlling NOXA and BIM transcription upon treatment with the proteasome inhibitor bortezomib

2014

The c-MYC (MYC afterward) oncogene is well known for driving numerous oncogenic programs. However, MYC can also induce apoptosis and this function of MYC warrants further clarification. We report here that a clinically relevant proteasome inhibitor significantly increases MYC protein levels and that endogenous MYC is necessary for the induction of apoptosis. This kind of MYC-induced cell death is mediated by enhanced expression of the pro-apoptotic BCL2 family members NOXA and BIM. Quantitative promoter-scanning chromatin immunoprecipitations (qChIP) further revealed binding of MYC to the promoters of NOXA and BIM upon proteasome inhibition, correlating with increased transcription. Both pr…

Programmed cell deathTranscription GeneticEGR1ApoptosisBiologyBortezomibProto-Oncogene Proteins c-mycMicehemic and lymphatic diseasesCell Line TumorProto-Oncogene ProteinsGeneticsmedicineAnimalsPromoter Regions GeneticTranscription factorCells CulturedEarly Growth Response Protein 1Zinc finger transcription factorBinding SitesOncogeneBcl-2-Like Protein 11Genes p16Gene regulation Chromatin and EpigeneticsMembrane ProteinsPromoterGenes p53Boronic AcidsChromatinddc:Gene Expression Regulation NeoplasticProto-Oncogene Proteins c-bcl-2PyrazinesCancer researchProteasome inhibitorApoptosis Regulatory ProteinsProteasome Inhibitorsmedicine.drug
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Mode of cell death induction by pharmacological Vacuolar H+-ATPase (V-ATPase) inhibition.

2012

The vacuolar H+-ATPase (V-ATPase), a multisubunit proton pump, has come into focus as an attractive target in cancer invasion. However, little is known about the role of V-ATPase in cell death, and especially the underlying mechanisms remain mostly unknown. We used the myxobacterial macrolide archazolid B, a potent inhibitor of the V-ATPase, as an experimental drug as well as a chemical tool to decipher V-ATPase-related cell death signaling. We found that archazolid induced apoptosis in highly invasive tumor cells at nanomolar concentrations which was executed by the mitochondrial pathway. Prior to apoptosis induction archazolid led to the activation of a cellular stress response including …

Programmed cell deathVacuolar Proton-Translocating ATPasesCellBiologyBiochemistryCellular stress responseCell Line TumormedicineAutophagyV-ATPaseHumansEnzyme InhibitorsMolecular BiologyCell ProliferationMembrane Potential MitochondrialMicroscopy ConfocalCell DeathCell growthAutophagyCytochromes cCell BiologyCell biologymedicine.anatomical_structureApoptosisSignal transductionSignal Transduction
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Prevention by Dietary Polyphenols (Resveratrol, Quercetin, Apigenin) Against 7-Ketocholesterol-Induced Oxiapoptophagy in Neuronal N2a Cells: Potentia…

2020

The Mediterranean diet is associated with health benefits due to bioactive compounds such as polyphenols. The biological activities of three polyphenols (quercetin (QCT), resveratrol (RSV), apigenin (API)) were evaluated in mouse neuronal N2a cells in the presence of 7-ketocholesterol (7KC), a major cholesterol oxidation product increased in patients with age-related diseases, including neurodegenerative disorders. In N2a cells, 7KC (50 &micro

Programmed cell deathanimal diseasesSOD2N2a cellsApoptosisresveratrolmedicine.disease_causeoxiapoptophagyArticleCell LinequercetinMiceage-related diseasesmedicineAutophagyPeroxisomesAnimalsHumansApigeninlcsh:QH301-705.5Ketocholesterols7-ketocholesterolchemistry.chemical_classificationNeuronsReactive oxygen speciesDose-Response Relationship DrugChemistryfood and beveragesPolyphenolsNeurodegenerative DiseasesGeneral MedicinePeroxisomeMolecular biologyMitochondriaOxidative StresspolyphenolMitochondrial biogenesislcsh:Biology (General)ApoptosisACOX1Reactive Oxygen SpeciesoxysterolOxidative stressCells
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Highlighting Curcumin-Induced Crosstalk between Autophagy and Apoptosis as Supported by Its Specific Subcellular Localization

2020

Curcumin, a major active component of turmeric (Curcuma longa, L.), is known to have various effects on both healthy and cancerous tissues. In vitro studies suggest that curcumin inhibits cancer cell growth by activating apoptosis, but the mechanism underlying the anticancer effect of curcumin is still unclear. Since there is a recent consensus about endoplasmic reticulum (ER) stress being involved in the cytotoxicity of natural compounds, we have investigated using Image flow cytometry the mechanistic aspects of curcumin&rsquo

Programmed cell deathautophagyCell Membrane PermeabilityCurcumin[SDV]Life Sciences [q-bio][SDV.BC.BC]Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]Article03 medical and health scienceschemistry.chemical_compound0302 clinical medicineLysosomeCell Line TumorxCELLigencemedicine[SDV.BC.BC] Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]Humanscancerlcsh:QH301-705.5030304 developmental biologyreal-time cellular impedanceCell Nucleus0303 health sciencescalciumEndoplasmic reticulumAutophagyapoptosisROSGeneral Medicine3. Good healthCell biologyMitochondriaendoplasmic reticulummedicine.anatomical_structurecell deathchemistrylcsh:Biology (General)Apoptosis030220 oncology & carcinogenesisCancer cellCurcuminUnfolded protein responseUnfolded Protein ResponselysosomeLysosomes[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologySubcellular Fractions
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Autophagy-Dependent Anticancer Immune Responses Induced by Chemotherapeutic Agents in Mice

2011

Antineoplastic chemotherapies are particularly efficient when they elicit immunogenic cell death, thus provoking an anticancer immune response. Here we demonstrate that autophagy, which is often disabled in cancer, is dispensable for chemotherapy-induced cell death but required for its immunogenicity. In response to chemotherapy, autophagy-competent, but not autophagy-deficient, cancers attracted dendritic cells and T lymphocytes into the tumor bed. Suppression of autophagy inhibited the release of adenosine triphosphate (ATP) from dying tumor cells. Conversely, inhibition of extracellular ATP-degrading enzymes increased pericellular ATP in autophagy-deficient tumors, reestablished the recr…

Programmed cell deathcells cancer immunogenicity calreticulin exposure hmgb1Antineoplastic AgentsBiologyimmunogenicityNOMicechemistry.chemical_compoundAdenosine TriphosphateImmune systemCell Line TumorNeoplasmsAutophagyExtracellularAnimalsHumanscancerMice Inbred BALB CMultidisciplinaryCell DeathImmunogenicityAutophagyDendritic CellsMice Inbred C57BLhmgb1chemistryCell cultureCancer researchImmunogenic cell deathcellsMitoxantroneCalreticulinAdenosine triphosphatecalreticulin exposure
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Role Of S-Nitrosylation In The Extrinsic Apoptotic Signalling Pathway In Cancer.

2015

One of the key features of tumour cells is the acquisition of resistance to apoptosis. Thus, determining therapeutic strategies that circumvent apoptotic resistance and result in tumor regression is a challenge. One strategy to induce apoptosis is to activate death receptor signalling pathways. Members of the Tumor Necrosis Factor TNF-family death receptors ligand (TRAIL, FasL and TNF-α) can originate from immune and non-immune cells. Death receptors, engaged by cognate ligands, can initiate multiple signaling pathways, which can generate diverse outcomes, including non-apoptosis-related signal. Knowledge on the molecular mechanisms (that determine death or survival of tumour cells) followi…

Programmed cell deathlcsh:R5-920Organic ChemistryClinical BiochemistryApoptosisS-NitrosylationBiologyCell fate determinationNitric OxideBiochemistryFas ligandCell biologyNeoplasm Proteinslcsh:Biology (General)ApoptosisCell Line TumorNeoplasmsAnimalsHumansTumor necrosis factor alphaSignal transductionReceptorlcsh:Medicine (General)lcsh:QH301-705.5Signal TransductionRedox biology
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Berberine inhibits cell growth and mediates caspase-independent cell death in human pancreatic cancer cells.

2010

Pancreatic cancer is one of the most aggressive human malignancies with an increasing incidence worldwide. In addition to the poor survival rates, combinations using gemcitabine as a backbone have failed to show any benefit beyond monotherapy. These facts underscore an urgent need for novel therapeutic options and motivated us to study the effect of berberine on pancreatic cancer cells. Here, we undertook an mRNA-based gene expression profiling study in order to get deeper insight into the molecular targets mediating the growth inhibitory effects of berberine on pancreatic cancer cells compared to normal ones. Twenty-four hours after treatment, berberine showed preferential selectivity towa…

Programmed cell deathmedicine.medical_specialtyBerberineDNA damagePharmaceutical ScienceApoptosisAnalytical Chemistrychemistry.chemical_compoundBerberinePancreatic cancerInternal medicineCell Line TumorDrug DiscoverymedicineHumansRNA MessengerCell ProliferationOligonucleotide Array Sequence AnalysisPharmacologybiologyCell growthTopoisomeraseGene Expression ProfilingOrganic ChemistryCancermedicine.diseaseAntineoplastic Agents PhytogenicCaspase InhibitorsImmunohistochemistryEnzyme ActivationPancreatic NeoplasmsEndocrinologyComplementary and alternative medicinechemistryApoptosisCaspasesbiology.proteinCancer researchMolecular MedicineSignal TransductionPlanta medica
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Peroxisome proliferator-activated receptor δ (PPARδ) activation protects H9c2 cardiomyoblasts from oxidative stress-induced apoptosis

2005

Activation of peroxisome proliferator-activated receptor alpha (PPARalpha) and PPARgamma plays beneficial roles in cardiovascular disorders such as atherosclerosis and heart reperfusion. Although PPARalpha and gamma have been documented to reduce oxidative stress in the vasculature and the heart, the role of PPARdelta remains poorly studied.We focused on PPARdelta function in the regulation of oxidative stress-induced apoptosis in the rat cardiomyoblast cell line H9c2. Using semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR), we showed that PPARdelta is the predominantly expressed isotype whereas PPARalpha was weakly detected. By performing cell viability assays, we …

Programmed cell deathmedicine.medical_specialtyPhysiologyBlotting WesternPeroxisome proliferator-activated receptorApoptosisCaspase 3DNA FragmentationBiologyTransfectionmedicine.disease_causeCell LineGW501516Physiology (medical)Internal medicineIn Situ Nick-End LabelingmedicineAnimalsPPAR deltaViability assayReceptorchemistry.chemical_classificationCaspase 3Reverse Transcriptase Polymerase Chain ReactionHydrogen PeroxideCatalasemedicine.diseaseRatsUp-RegulationCell biologyOxidative StressThiazolesEndocrinologychemistryApoptosisCaspasesCardiology and Cardiovascular MedicineMyoblasts CardiacOxidative stressCardiovascular Research
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NF-κB Inhibition Restores Sensitivity to Fas-Mediated Apoptosis in Lymphoma Cell Lines

2003

Failure to perform the Fas-related apoptosis pathway can account for tumor resistance both to chemotherapeutic agents and to immunological effectors. We studied the role of NK-kappaB in Fas-resistance, employing the Fas-sensitive human T-lymphoma HuT78 cell line and its Fas-resistant variants HuT78B1 and HuT78G9. All these cell lines expressed high levels of constitutively activated NF-kappaB. Pretreatment of cells with NF-kappaB inhibitors (PDTC, MG132, or SN50) strongly enhanced CH11-induced apoptosis in HuT78 and Hut78G9 cells, while only MG132 showed a similar potentiating effect in HuT78B1. The described synergism was significantly inhibited by pretreatment with the anti-Fas-blocking a…

ProlineLeupeptinsT cellAntineoplastic AgentsApoptosisBiologyLymphoma T-CellGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundHistory and Philosophy of ScienceThiocarbamatesCell Line TumorMG132medicineHumansfas Receptorapoptosis NF-KappaB MG132 Fas/FasL systemEffectorGeneral NeuroscienceNF-kappa BNF-κBmedicine.diseaseMolecular biologyLymphomamedicine.anatomical_structurechemistryApoptosisCell culturebiology.proteinAntibodyPeptidesAnnals of the New York Academy of Sciences
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