Search results for "Apoptosis."

showing 10 items of 1794 documents

LS104, a non-ATP-competitive small-molecule inhibitor of JAK2, is potently inducing apoptosis in JAK2V617F-positive cells

2008

Abstract The activating JAK2V617F mutation has been described in the majority of patients with BCR-ABL-negative myeloproliferative disorders (MPD). In this report, we characterize the small-molecule LS104 as a novel non-ATP-competitive JAK2 inhibitor: Treatment of JAK2V617F-positive cells with LS104 resulted in dose-dependent induction of apoptosis and inhibition of JAK2 autophosphorylation and of downstream targets. Activation of these targets by JAK2 was confirmed in experiments using small interfering RNA. LS104 inhibited JAK2 kinase activity in vitro. This effect was not reversible using elevated ATP concentrations, whereas variation of the kinase substrate peptide led to modulation of …

Cancer ResearchSmall interfering RNAApoptosisStyrenesMiceAdenosine TriphosphateCell Line Tumorhemic and lymphatic diseasesAnimalsHumansPhosphorylationKinase activityProtein Kinase InhibitorsMyeloproliferative DisordersJanus kinase 2AcrylonitrileDose-Response Relationship DrugbiologyKinaseAutophosphorylationJanus Kinase 2Molecular biologyIn vitroOncologyApoptosisbiology.proteinSignal transductionK562 CellsSignal TransductionMolecular Cancer Therapeutics
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Type V collagen and protein kinase C η down-regulation in 8701-BC breast cancer cells

2011

We previously reported that ductal infiltrating carcinomas (d.i.c.) of the human breast display profound modifications of the stromal architecture, associated with anomalous collagen composition. Among the major alterations observed in the interstitial collagen, the relative increase of type V collagen content was detected. When type V collagen was used as an "in vitro" substrate for 8701-BC d.i.c. cells, it appeared able to restrain cell growth, inhibit cell motility and invasion "in vitro", and modify the expression levels of genes coding for apoptosis factors, caspases and stress response proteins. In the present paper we demonstrate that type V collagen induces the down-regulation of pr…

Cancer ResearchStromal cellbiologyApoptosisCell growthbiology.proteinCaspase 5Cell morphologyMolecular BiologyMolecular biologyCaspaseProtein kinase CCollagen receptorMolecular Carcinogenesis
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MYCN and survivin cooperatively contribute to malignant transformation of fibroblasts

2013

The oncogenes MYCN and survivin (BIRC5) maintain aggressiveness of diverse cancers including sarcomas. To investigate whether these oncogenes cooperate in initial malignant transformation, we transduced them into Rat-1 fibroblasts. Indeed, survivin enhanced MYCN-driven contact-uninhibited and anchorage-independent growth in vitro. Importantly, upon subcutaneous transplantation into mice, cells overexpressing both instead of either one of the oncogenes generated tumors with shortened latency, marked anaplasia and an increased proliferation-to-apoptosis ratio resulting in accelerated growth. Mechanistically, the increased tumorigenicity was associated with an enhanced Warburg effect and a hyp…

Cancer ResearchSurvivinBlotting WesternApoptosisBiologyReal-Time Polymerase Chain ReactionN-Myc Proto-Oncogene ProteinInhibitor of Apoptosis ProteinsMalignant transformationImmunoenzyme TechniquesMiceAdenosine TriphosphateSurvivinmedicineAnimalsHumansLactic AcidRNA MessengerneoplasmsAnaplasiaCells CulturedCell ProliferationHomeodomain ProteinsOncogene ProteinsN-Myc Proto-Oncogene ProteinReverse Transcriptase Polymerase Chain ReactionCell growthNuclear ProteinsGeneral MedicineFibroblastsWarburg effectCell HypoxiaRatsTransplantationCell Transformation NeoplasticGlucoseHypoxia-inducible factorsCancer researchmedicine.symptomGlycolysisCarcinogenesis
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Toll-like receptors: Expression and involvement in Multiple Myeloma

2010

Multiple Myeloma (MM) cells express and respond to a broad range of TLRs. Accumulating evidences suggest that TLRs act as double-edged sword in MM biology. Indeed, TLR9 or TLR3 ligands could enhance immunity against MM cells or directly induce cell apoptosis, whereas various TLR agonists could induce MM survival, proliferation, and immune escape. This review is focused on the heterogeneous expression and function of TLRs in MM and on the potential implication of TLR ligands of infectious or endogenous origin in MM emergence, resistance, or progression.

Cancer ResearchTLR9ApoptosisEndogenyHematologyBiologyLigandsmedicine.diseaseToll-Like Receptor 3Cell biologyGene Expression Regulation NeoplasticImmune systemOncologyApoptosisImmunityToll-Like Receptor 9TLR3medicineAnimalsHumansTumor EscapeMultiple MyelomaReceptorMultiple myelomaLeukemia Research
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Bovine seminal ribonuclease is cytotoxic for both malignant and normal telomerase-positive cells

2005

Bovine seminal-ribonuclease (BS-RNase) is a member of the 'ribonucleases with special biological actions' family since it possesses specific anti-tumour, anti-spermatogenic and embryotoxic activities and exerts an immunosuppressive effect on T lymphocytes. In previous studies it was demonstrated that BS-RNase induced apoptosis in proliferating, malignant and normal cells and that telomerase activity loss also caused apoptotic death in neoplastic cells. Since an obvious relationship between cell proliferation and telomerase activity exists, the aim of this work was to study if the pro-apoptotic cytotoxic action exerted by BS-RNase on proliferating malignant cells (HT29) and proliferating nor…

Cancer ResearchTelomeraseTime FactorsT-LymphocytesCellular differentiationCytotoxicityBlotting WesternDown-RegulationTetrazolium SaltsAntineoplastic AgentsApoptosisEnzyme-Linked Immunosorbent AssayBiologyHT29 CellsCell Line TumorEndoribonucleasesAnimalsHumansCytotoxic T cellTelomerase reverse transcriptaseLymphocytesRNA MessengerTelomeraseBovine seminal-ribonuclease; Cytotoxicity; HTR; Nucleolar localization; TelomeraseCell ProliferationReverse Transcriptase Polymerase Chain ReactionCell growthCell DifferentiationCell cycleNucleolar localizationMolecular biologyThiazolesBovine seminal-ribonucleaseMicroscopy FluorescenceOncologyCell cultureLeukocytes MononuclearMicroscopy Electron ScanningRNACattleHTRCell NucleolusImmunosuppressive Agents
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Oncolytic parvovirus H1 induces release of heat-shock protein HSP72 in susceptible human tumor cells but may not affect primary immune cells.

2003

Certain autonomous parvoviruses preferentially replicate in and kill in vitro-transformed cells and may reduce the incidence of spontaneous and implanted tumors in animals. Hence, these viruses and their derivatives are currently under evaluation as antitumor vectors. However, the mechanisms underlying their tumor-suppressing properties are not yet understood. We asked whether the lytic parvovirus H1 may enhance the immunogenicity of infected tumor cells. Out of human melanoma and gastrointestinal tumor cells, we selected the cell line SK29-Mel-1 being very susceptible to H1-induced apoptotic killing. Here, no upregulation of HLA class I and costimulatory molecules could be observed followi…

Cancer ResearchTime FactorsCell SurvivalGenetic VectorsApoptosisHSP72 Heat-Shock ProteinsVirusParvovirusImmune systemCell Line TumorHumansHSP70 Heat-Shock ProteinsTransgenesMolecular BiologyMelanomaCells CulturedHeat-Shock ProteinsbiologyParvovirusImmunogenicityHSC70 Heat-Shock Proteinsbiology.organism_classificationVirologyOncolytic virusUp-RegulationCell killingViral replicationCell cultureCancer researchMolecular MedicineCarrier ProteinsCancer gene therapy
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Ganciclovir-induced apoptosis in HSV-1 thymidine kinase expressing cells: critical role of DNA breaks, Bcl-2 decline and caspase-9 activation.

2002

Although ganciclovir (GCV) is most often used in suicide anticancer gene therapy, the mechanism of GCV-induced cell killing and apoptosis is not fully understood. We analysed the mechanism of apoptosis triggered by GCV using a model system of CHO cells stably transfected with HSV-1 thymidine kinase (HSVtk). GCV-induced apoptosis is due to incorporation of the drug into DNA resulting in replication-dependent formation of DNA double-strand breaks and, at later stages, S and G2/M arrest. GCV-provoked DNA instability was likely to be responsible for the observed initial decline in Bcl-2 level and caspase-9/-3 activation. Further decline in the Bcl-2 level was due to cleavage of the protein by c…

Cancer ResearchTime FactorsvirusesPoly ADP ribose polymeraseApoptosisCytochrome c GroupCHO CellsHerpesvirus 1 HumanTransfectionThymidine KinaseCricetinaeGeneticsAnimalsfas ReceptorMolecular BiologyGanciclovirbiologyReverse Transcriptase Polymerase Chain ReactionCytochrome cCell CycleTransfectionSuicide geneFas receptorMolecular biologyCaspase 9Enzyme ActivationGene Expression Regulation NeoplasticCell killingProto-Oncogene Proteins c-bcl-2ApoptosisThymidine kinaseCaspasesbiology.proteinPoly(ADP-ribose) PolymerasesDNA DamageOncogene
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MUC1 oncoprotein promotes refractoriness to chemotherapy in thyroid cancer cells.

2007

Abstract Overexpression of MUC1 oncoprotein is frequently observed in cancer and contributes to confer resistance to genotoxic agents. Papillary, follicular, and anaplastic thyroid carcinomas are the three forms of thyroid epithelial cancer. Anaplastic tumors are less differentiated and extremely aggressive, characterized by a poor prognosis. Little is known about the role of MUC1 in thyroid cancer. We recently showed that autocrine production of interleukin (IL)-4 and IL-10 controls thyroid cancer cell survival, growth, and resistance to chemotherapy through activation of Janus-activated kinase/signal transducers and activators of transcription (JAK/STAT) and phosphatidylinositide 3′-OH ki…

Cancer ResearchTranscription GeneticDrug ResistanceApoptosisSuppressor of Cytokine Signaling ProteinsnPhosphatidylinositol 3-KinasesAntibioticsMedicineRNA Small InterferingThyroid cancerTumorAntibiotics AntineoplasticThyroidAntineoplasticInterleukin-10Mitochondriamedicine.anatomical_structureOncologyTranscriptionSignal TransductionDown-RegulationSmall InterferingTransfectionCell LineThyroid carcinomaSuppressor of Cytokine Signaling 1 ProteinGeneticSettore MED/04 - PATOLOGIA GENERALEAntigens NeoplasmCell Line TumorHumansThyroid NeoplasmsAnaplastic thyroid cancerAntigensProtein kinase BPI3K/AKT/mTOR pathwayAntibiotics Antineoplastic; Antigens Neoplasm; Apoptosis; Cell Line Tumor; Down-Regulation; Doxorubicin; Drug Resistance Neoplasm; Humans; Interleukin-10; Interleukin-4; Mitochondria; Mucin-1; Mucins; Phosphatidylinositol 3-Kinases; Proto-Oncogene Proteins c-akt; RNA Small Interfering; Signal Transduction; Suppressor of Cytokine Signaling 1 Protein; Suppressor of Cytokine Signaling Proteins; Thyroid Neoplasms; Transcription Genetic; Transfection; Cancer Research; Oncologybusiness.industryMucin-1MucinsCancermedicine.diseaseDoxorubicinDrug Resistance NeoplasmCancer cellCancer researchNeoplasmRNAInterleukin-4businessProto-Oncogene Proteins c-aktCancer research
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Pharmacologic activation of p53 elicits Bax-dependent apoptosis in the absence of transcription

2003

AbstractRecent efforts to develop pharmacologic agents that restore function to mutant forms of p53 hold significant promise in cancer therapy. Here, we examine the effects of such pharmacologic activation of p53 function using a small molecule, PRIMA-1, and a model system employing a p53 protein fused to a mutant steroid binding domain of the murine estrogen receptor (p53ERtam) that renders it responsive only in the presence of 4-hydroxytamoxifen. In either case, p53 activation triggered apoptosis that was not inhibited by the presence of macromolecular synthesis inhibitors. This p53-induced, transcription-independent apoptosis is Bax dependent, proceeds in the absence of a nucleus, and in…

Cancer ResearchTranscription GeneticRecombinant Fusion ProteinsMutantEstrogen receptorApoptosis03 medical and health sciencesMice0302 clinical medicineBcl-2-associated X proteinProto-Oncogene ProteinsTumor Cells CulturedAnimalsHumansCloning MolecularReceptorCells Cultured030304 developmental biologybcl-2-Associated X ProteinCell NucleusProtein Synthesis Inhibitors0303 health sciencesAza CompoundsbiologyCytochrome cCytochromes cCell BiologyFibroblastsBridged Bicyclo Compounds Heterocyclic3. Good healthCell biologyTransport proteinMitochondriaProtein TransportTamoxifenProto-Oncogene Proteins c-bcl-2Receptors EstrogenOncologyApoptosis030220 oncology & carcinogenesisMutationbiology.proteinTumor Suppressor Protein p53Binding domainCancer Cell
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Human leukocyte elastase counteracts matrix metalloproteinase-7 induced apoptosis resistance of tumor cells.

2008

Matrix metalloproteinase-7 (MMP-7/Matrilysin) is a component of the tumor microenvironment associated with malignant progression. Its expression in tumors protects tumor cells from CD95-mediated apoptosis and the cytotoxic activity of tumor specific CD8(+) T cells. In the present study, we show that human leukocyte elastase (HLE) secreted by polymorphonuclear leukocytes cleaves MMP-7 resulting in loss of enzymatic activity. The anti-apoptotic effect of MMP-7 is reduced in the presence of HLE for CD95-, doxorubicin- and CTL-mediated apoptosis. Our data indicates that HLE may be a natural inactivator of MMP-7 which can counteract MMP-7-induced apoptosis resistance.

Cancer ResearchTumor microenvironmentbiologyChemistryNeutrophilsApoptosisMatrix metalloproteinaseFas receptorCell biologyOncologyApoptosisDoxorubicinNeutrophil elastaseMatrix Metalloproteinase 7NeoplasmsCancer researchbiology.proteinCytotoxic T cellHumanssense organsMatrilysinLeukocyte ElastaseCD8Cells CulturedT-Lymphocytes CytotoxicCancer letters
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