Search results for "Cellular differentiation"

showing 10 items of 482 documents

Mechanisms of tumor invasion: evidence from in vivo observations.

1985

The major mechanisms of tumor invasion in vivo are discussed in the present review. A special emphasis is placed on tumor dedifferentiation which has proved to be of paramount importance for the invasion process. Based on in vivo observations obtained from various human and animal tumors a concept for the mechanism of tumor invasion is proposed which mainly comprises the following basic events: the first and essential step in tumor invasion is the tumor dedifferentiation and dissociation at the invasion front. This apparently temporary and reversible process mobilizes the tumor cells out of the main tumor bulk and enables them to invade the host tissue by active locomotion. This mechanism i…

Cancer ResearchPathologymedicine.medical_specialtyCell divisionColonCellular differentiationBiologyHost tissueBasement MembraneExtracellular matrixIn vivoCell MovementmedicineAnimalsEdemaHumansNeoplasm InvasivenessProcess (anatomy)Cells CulturedDimethylhydrazinesCell DifferentiationMuscle SmoothCell biology12-DimethylhydrazineExtracellular MatrixNeoplasm ProteinsRatsOxygenInterstitial edemaIntercellular JunctionsOncologyColonic NeoplasmsAtrophyIntracellularCell DivisionPeptide HydrolasesCancer metastasis reviews
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Role of the Ha-ras gene in the malignant transformation of rat liver oval cells.

1997

We have shown that the oval cell line OCICDE 22 can be transformed by the highly carcinogenic fiord-region diol epoxides of benzo[c]phenanthrene. Mutational activation of the ras proto-oncogene family has been proposed to be a critical event in the formation of tumors induced by polycyclic aromatic hydrocarbons. Therefore, we investigated whether in the earlier transformed OCICDE 22 cells any point mutations were detected in the ras proto-oncogene. The results indicate that the malignant transformation of OCICDE 22 cells by the 4 stereoisomeric benzo[c]phenan-threne diol epoxides in vitro is independent of activation of the Ha-ras proto-oncogene. In addition, Northern and Western blot analy…

Cancer ResearchPathologymedicine.medical_specialtyCellular differentiationBiologymedicine.disease_causeTransfectionProto-Oncogene MasMalignant transformationCell LineRats Sprague-DawleyLiver Neoplasms ExperimentalmedicineAnimalsHumansCell LineageCarcinogenOncogeneCarcinomaCell DifferentiationEpithelial CellsTransfectionPhenanthrenesMolecular biologyIn vitroRatsGene Expression Regulation NeoplasticCell Transformation NeoplasticGenes rasOncologyLiverUrinary Bladder NeoplasmsCell cultureCarcinogensNeoplastic Stem CellsBile DuctsCarcinogenesisNeoplasm TransplantationInternational journal of cancer
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Breast cancer cell lines contain functional cancer stem cells with metastatic capacity and a distinct molecular signature.

2009

Abstract Tumors may be initiated and maintained by a cellular subcomponent that displays stem cell properties. We have used the expression of aldehyde dehydrogenase as assessed by the ALDEFLUOR assay to isolate and characterize cancer stem cell (CSC) populations in 33 cell lines derived from normal and malignant mammary tissue. Twenty-three of the 33 cell lines contained an ALDEFLUOR-positive population that displayed stem cell properties in vitro and in NOD/SCID xenografts. Gene expression profiling identified a 413-gene CSC profile that included genes known to play a role in stem cell function, as well as genes such as CXCR1/IL-8RA not previously known to play such a role. Recombinant int…

Cancer ResearchPathologymedicine.medical_specialtyCellular differentiation[SDV.CAN]Life Sciences [q-bio]/CancerBreast Neoplasms[SDV.BC]Life Sciences [q-bio]/Cellular BiologyMice SCIDBiologyStem cell markerArticleCell LineReceptors Interleukin-8AMetastasisMice03 medical and health sciences0302 clinical medicineMice Inbred NODCancer stem cellCell Line TumorBiomarkers TumormedicineAnimalsHomeostasisHumansBreastRNA MessengerRNA NeoplasmNeoplasm MetastasisOligonucleotide Array Sequence Analysis030304 developmental biologySettore MED/04 - Patologia Generale0303 health sciencesReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingStem CellsCancerAldehyde DehydrogenaseFlow Cytometrymedicine.disease3. Good healthOncologyCell culture030220 oncology & carcinogenesisCancer researchFemaleStem cellImmortalised cell lineAldefluor breast cancer cell
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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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Targeting apoptosis proteins in hematological malignancies

2010

The apoptotic machinery plays a key role in hematopoietic cell homeostasis. Terminally differentiated cells are eliminated, at least in part, by apoptosis, whereas part of the apoptotic machinery, including one or several caspases, is required to go through very specific steps of the differentiation pathways. A number of hematological diseases involve a deregulation of this machinery, which in most cases is a decrease in cell sensitivity to pro-apoptotic signals through over-expression of anti-apoptotic molecules. In some situations however, e.g. in the erythroid lineage of low grade myelodysplastic syndromes, cell sensitivity to apoptosis is increased in a death receptor-dependent manner a…

Cancer ResearchProgrammed cell deathFas Ligand ProteinMyeloidCellular differentiationAmino Acid MotifsAntineoplastic AgentsApoptosisLigandsInhibitor of apoptosisTNF-Related Apoptosis-Inducing LigandCell Line TumormedicineHumansReceptorCaspasebiologyIntrinsic apoptosisCell DifferentiationCell biologyGene Expression Regulation Neoplasticmedicine.anatomical_structureProto-Oncogene Proteins c-bcl-2OncologyApoptosisHematologic Neoplasmsbiology.proteinDrug Screening Assays AntitumorApoptosis Regulatory ProteinsSignal TransductionCancer Letters
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HER2 regulates the mammary stem/progenitor cell population driving tumorigenesis and invasion.

2008

The cancer stem cell hypothesis proposes that cancers arise in stem/progenitor cells through disregulation of self-renewal pathways generating tumors, which are driven by a component of 'tumor-initiating cells' retaining stem cell properties. The HER2 gene is amplified in 20-30% of human breast cancers and has been implicated in mammary tumorigenesis as well as in mediating aggressive tumor growth and metastasis. We demonstrate that HER2 overexpression drives mammary carcinogenesis, tumor growth and invasion through its effects on normal and malignant mammary stem cells. HER2 overexpression in normal mammary epithelial cells (NMEC) increases the proportion of stem/progenitor cells as demons…

Cancer ResearchReceptor ErbB-2Cellular differentiationStem cell factorBreast NeoplasmsMice SCIDBiologyStem cell markerAntibodies Monoclonal HumanizedArticleMicePhosphatidylinositol 3-KinasesCancer stem cellMice Inbred NODCell Line TumorGeneticsAnimalsHumansNeoplasm InvasivenessBreastProgenitor cellskin and connective tissue diseasesMolecular BiologyCell ProliferationPhosphoinositide-3 Kinase InhibitorsSettore MED/04 - Patologia GeneraleAntibodies MonoclonalAldehyde DehydrogenaseTrastuzumabEndothelial stem cellImmunologyHER2 Breast Cancer Stem CellsCancer researchNeoplastic Stem CellsFemaleStem cellProto-Oncogene Proteins c-aktAdult stem cellSignal TransductionOncogene
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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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Bmi1 and Cell of Origin Determinants of Brain Tumor Phenotype

2007

Glioblastomas frequently express oncogenic EGFR and loss of the Ink4a/Arf locus. Bmi1, a positive regulator of stem cell self renewal, may be critical to drive brain tumor growth. In this issue of Cancer Cell, Bruggeman and colleagues suggest that brain tumors with these molecular alterations can be initiated in both neural precursor and differentiated cell compartments in the absence of Bmi1; however, tumorigenicity is reduced, and tumors contain fewer precursor cells. Surprisingly, tumors appear less malignant when initiated in precursor cells. Bmi1-deficient tumors also had fewer neuronal lineage cells, suggesting a role for Bmi1 in determination of cell lineage and tumor phenotype.

Cancer ResearchTime FactorsCell of originCellular differentiationBrain tumormacromolecular substancesBiologyMiceProto-Oncogene ProteinsPrecursor cellmedicineAnimalsHumansCyclin-Dependent Kinase Inhibitor p16Cell ProliferationNeoplasm StagingMice KnockoutNeuronsPolycomb Repressive Complex 1Brain NeoplasmsCell growthStem CellsNuclear ProteinsCell DifferentiationNeoplasms ExperimentalCell Biologymedicine.diseaseStem Cell Self-RenewalErbB ReceptorsGene Expression Regulation NeoplasticRepressor ProteinsCell Transformation NeoplasticPhenotypeOncologyBMI1AstrocytesMutationCancer cellCancer researchGlioblastomaSignal TransductionCancer Cell
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Fetal calf serum and retinoic acid affect proliferation and terminal differentiation of a rat rhabdomyosarcoma cell line (BA-HAN-1C)

1989

We report on the establishment of a model for differentiation induction in sarcomas, using the clonal rhabdomyosarcoma cell line BA-HAN-1C. This rhabdomyosarcoma cell line is composed of morphologically undifferentiated mononuclear stem cells, some of which spontaneously fuse to form terminally differentiated multinuclear myotube-like giant cells. The deprivation of fetal calf serum (FCS) or the exposure to retinoic acid, respectively, resulted in a significant inhibition of proliferation (P less than 0.001) and a marked increase in cellular differentiation as shown by a significant increase in the number of myotube-like giant cells (P less than 0.001) and in the creatine kinase activity (P…

Cancer Researchmedicine.medical_specialtyCell divisionCellular differentiationRetinoic acidTretinoinBiologyCell Linechemistry.chemical_compoundTretinoinInternal medicineRhabdomyosarcomaTumor Cells CulturedmedicineAnimalsCell DifferentiationFetal BloodMolecular biologyRatsP19 cellEndocrinologyOncologychemistryGiant cellCell cultureCattleStem cellCell DivisionResearch Articlemedicine.drugBritish Journal of Cancer
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Do not stress, just differentiate: role of stress proteins in hematopoiesis

2015

Hematopoiesis permits the constant regeneration of the blood system and is a permanent example of cell differentiation. Defects in its tight regulation can lead to either cell death or abnormal proliferation and may translate into multiple types of blood disorders, including leukemia. Heat shock proteins (HSPs), the expression of which is controlled by heat shock factors (HSFs, currently four known members),1 are a set of highly conserved proteins induced in response to a wide variety of physiological and environmental stress. HSP/HSF overexpression or mislocalization has been described in many cancers, particularly in hematology, and other diseases. Therefore, the involvement of HSFs/HSPs …

Cancer Researchmedicine.medical_specialtyCellular differentiationImmunologyBiologyMiceCellular and Molecular NeuroscienceHeat Shock Transcription FactorsInternal medicineHeat shock proteinmedicineAnimalsProtein IsoformsRNA MessengerHeat shockTranscription factorHeat-Shock ProteinsHematologyCell DifferentiationNews and CommentaryCell BiologyHematopoiesisCell biologyDNA-Binding ProteinsHeat shock factorHaematopoiesisCaspasesHSP60Heat-Shock ResponseTranscription FactorsCell Death & Disease
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