Search results for "cell differentiation"

showing 10 items of 907 documents

Calf Blood Compound (CFC) and Homeopathic Drug Induce Differentiation of Primary Human Skeletal Muscle Cells.

2019

AbstractThe use of injections to treat structural muscle injuries is controversially discussed. In our controlled in vitro study, we investigated the biological impact of Actovegin and Traumeel alone and in combination on primary human skeletal muscle cells. Cells were characterized by immunofluorescence staining for myogenic factor 5 (Myf5) and MyoD, and cultured with or without Actovegin and / or Traumeel. The effects of these agents were assayed by cell viability and gene expression of the specific markers MyoD, Myf5, neural adhesion molecule (NCAM), and CD31. Myotube formation was determined by myosin staining. Neither Actovegin nor Traumeel showed toxic effects or influenced cell viabi…

AdultMaleCell SurvivalMuscle Fibers SkeletalDown-RegulationPhysical Therapy Sports Therapy and RehabilitationHeme030204 cardiovascular system & hematologyPharmacologyMyoD03 medical and health sciences0302 clinical medicineIn vivoGene expressionMyosinmedicineHumansOrthopedics and Sports MedicineViability assayCells CulturedAgedMyoD ProteinMineralsDose-Response Relationship DrugChemistryPlant ExtractsSkeletal muscleCell Differentiation030229 sport sciencesMiddle Agedmusculoskeletal systemCD56 AntigenPlatelet Endothelial Cell Adhesion Molecule-1medicine.anatomical_structureNeural cell adhesion moleculeMYF5Myogenic Regulatory Factor 5International journal of sports medicine
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The transcription factor ZEB1 (deltaEF1) promotes tumour cell dedifferentiation by repressing master regulators of epithelial polarity.

2007

Epithelial to mesenchymal transition (EMT) is implicated in the progression of primary tumours towards metastasis and is likely caused by a pathological activation of transcription factors regulating EMT in embryonic development. To analyse EMT-causing pathways in tumouri-genesis, we identified transcriptional targets of the E-cadherin repressor ZEB1 in invasive human cancer cells. We show that ZEB1 repressed multiple key determinants of epithelial differentiation and cell–cell adhesion, including the cell polarity genes Crumbs3, HUGL2 and Pals1-associated tight junction protein. ZEB1 associated with their endogenous promoters in vivo, and strongly repressed promotor activities in reporter …

AdultCancer ResearchChromatin ImmunoprecipitationCellular differentiationImmunoblottingDown-RegulationBreast NeoplasmsBiologymedicine.disease_causeEpitheliumArticleCell polarityGeneticsmedicineTumor Cells CulturedHumansNeoplasm InvasivenessEpithelial–mesenchymal transitionCell adhesionPromoter Regions GeneticMolecular BiologyTranscription factorEpithelial polarityAgedOligonucleotide Array Sequence AnalysisHomeodomain ProteinsMembrane GlycoproteinsReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingCell PolarityMembrane ProteinsZinc Finger E-box-Binding Homeobox 1Cell DifferentiationMiddle AgedCadherinsCytoskeletal ProteinsMicroscopy FluorescenceCancer cellColonic NeoplasmsCancer researchDisease ProgressionSnail Family Transcription FactorsCarcinogenesisNucleoside-Phosphate KinaseTranscription FactorsOncogene
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A novel in vitro model for the study of plaque development in atherosclerosis

2006

SummaryFor the study of atherogenesis in vitro, coculture systems have been devised, in which two or more cell types can be cultured in close contact to each other. Herein, we describe a novel in vitro model that aims at the simulation of the morphology ofa normal muscular artery allowing for the study of the initial events in atherosclerosis. Usinga modified fibrin gel as a scaffold for the coculture of endothelial cells (ECs) and smooth muscle cells (SMCs), we generated an autologous in vitro model with a multilayer growth of SMCs (intima-like structure) covered by an endothelium. The production of extracellular matrix (ECM) could be visualized histologically and verified by (i) ascorbic-…

Pathologymedicine.medical_specialtyTime FactorsEndotheliumCellular differentiationMyocytes Smooth MuscleMonocytesMuscle Smooth VascularCell LineExtracellular matrixCell MovementLamininCell AdhesionmedicineHumansFoam cellFibrinDose-Response Relationship Drugbiologybusiness.industryEndothelial CellsCell DifferentiationHematologyAtherosclerosisCoculture TechniquesIn vitroExtracellular MatrixCell biologyLipoproteins LDLmedicine.anatomical_structureCell culturebiology.proteinbusinessGelsFoam CellsLipoproteinThrombosis and Haemostasis
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Differentiative pathway activated by 3-aminobenzamide, an inhibitor of PARP, in human osteosarcoma MG-63 cells

2004

AbstractThis study describes the molecular mechanism by which treatment with 3-AB, a potent inhibitor of PARP, allows human osteosarcoma MG-63 cells to restrict growth and enter differentiation. Our findings show that in MG-63 cells, aberrant gene expression keeps Rb protein constitutively inactivated through hyperphosphorylation and this promotes uncontrolled proliferation of the cells. After 3-AB-treatment, the poly(ADP-ribosyl)ation of nuclear proteins markedly decreases and this results in an increase in both the hypophosphorylated active form of Rb and pRb/E2F complexes. These effects are accompanied by G1 arrest, downregulation of gene products required for proliferation (cyclin D1, β…

Blotting WesternBiophysicsHyperphosphorylationCell Cycle ProteinsPoly(ADP-ribose) Polymerase InhibitorsCell cycleRetinoblastoma ProteinBiochemistryPARPRb proteinCyclin D1Downregulation and upregulationStructural BiologyCell Line TumorGene expressionGeneticsHumansImmunoprecipitationOsteopontinEnzyme InhibitorsPhosphorylationE2FMolecular BiologyDNA PrimersAdenosine Diphosphate RiboseOsteosarcomaBase SequencebiologyReverse Transcriptase Polymerase Chain ReactionG1 PhaseCell DifferentiationCell BiologyCell cycleFlow Cytometry3-ABE2F Transcription FactorsChromatinDNA-Binding ProteinsGene Expression RegulationDifferentiationBenzamidesbiology.proteinCancer researchTranscription FactorsFEBS Letters
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The new frontier of bone formation: a breakthrough in postmenopausal osteoporosis?

2009

Osteoporosis is a chronic disease that accelerates after menopause in many women. Most of the pharmacologic attempts to control the disease, such as hormone therapy, have emphasized the constraint of bone resorption. Since recent years have witnessed important advances in the field of bone formation, this review aims to update the present knowledge on the mechanisms affecting osteoblastogenesis and on the therapeutic results achieved by recently approved drugs.We sought peer-reviewed, full-length basic and clinical articles published between 1995 and May 2008 using a PubMed search strategy, with the terms osteoporosis and osteoblast, osteoporosis and strontium ranelate, and osteoporosis and…

medicine.medical_specialtyPediatricsmedicine.medical_treatmentOsteoporosisThiophenesDiseasePostmenopausal osteoporosisFractures BoneStrontium ranelateOsteogenesisOrganometallic CompoundsmedicineAnimalsHumansBone formationOsteoporosis PostmenopausalAgedOsteoblastsBone Density Conservation Agentsbusiness.industryObstetrics and GynecologyCell DifferentiationGeneral MedicineMiddle Agedmedicine.diseaseSurgeryMenopauseChronic diseaseGene Expression RegulationParathyroid HormoneFemaleHormone therapybusinessmedicine.drugClimacteric
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Differentiation of Effector/Memory Vδ2 T Cells and Migratory Routes in Lymph Nodes or Inflammatory Sites

2003

Vδ2 T lymphocytes recognize nonpeptidic antigens without presentation by MHC molecules and mount both immediate effector functions and memory responses after microbial infection. However, how Vδ2 T cells mediate different facets of a memory response remains unknown. Here, we show that the expression of CD45RA and CD27 antigens defines four subsets of human Vδ2 T cells with distinctive compartmentalization routes. Naive CD45RA+CD27+ and memory CD45RA−CD27+ cells express lymph node homing receptors, abound in lymph nodes, and lack immediate effector functions. Conversely, memory CD45RA−CD27− and terminally differentiated CD45RA+CD27− cells, which express receptors for homing to inflamed tissu…

Immunologychemical and pharmacologic phenomenachemokine receptorsBiologyMajor histocompatibility complexArticleeffector functions03 medical and health sciences0302 clinical medicineAntigenimmune system diseasesCell MovementT-Lymphocyte SubsetsLymph node stromal cellImmunology and AllergyAnimalsHumansCell LineageIL-2 receptorAntigen-presenting cell030304 developmental biologyγδ cellsInflammation0303 health sciencesEffectorvirus diseasesphosphoantigenshemic and immune systemsfunctional subsetsCell DifferentiationTumor Necrosis Factor Receptor Superfamily Member 7PhenotypeImmunologybiology.proteinLeukocyte Common AntigensLymphLymph NodesImmunologic Memory030215 immunologyHoming (hematopoietic)The Journal of Experimental Medicine
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The Disease-Specific Phenotype in Cardiomyocytes Derived from Induced Pluripotent Stem Cells of Two Long QT Syndrome Type 3 Patients

2013

Long QT syndromes (LQTS) are heritable diseases characterized by prolongation of the QT interval on an electrocardiogram, which often leads to syncope and sudden cardiac death. Here we report the generation of induced pluripotent stems (iPS) cells from two patients with LQTS type 3 carrying a different point mutation in a sodium channel Nav1.5 (p.V240M and p.R535Q) and functional characterization of cardiomyocytes (CM) derived from them. The iPS cells exhibited all characteristic properties of pluripotent stem cells, maintained the disease-specific mutation and readily differentiated to CM. The duration of action potentials at 50% and 90% repolarization was longer in LQTS-3 CM as compared t…

AdultMalePluripotent Stem Cellsmedicine.medical_specialtyLong QT syndromeCellular differentiationlcsh:MedicineAction PotentialsNAV1.5 Voltage-Gated Sodium ChannelQT intervalMembrane PotentialsNAV1.5 Voltage-Gated Sodium ChannelInternal medicinemedicineRepolarizationHumansPoint MutationMyocytes CardiacInduced pluripotent stem celllcsh:ScienceCells CulturedMultidisciplinarybusiness.industryPoint mutationSodium channellcsh:RCell Differentiationmedicine.diseaseLong QT SyndromeEndocrinologylcsh:QFemalebusinessResearch ArticlePLoS ONE
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Differential Distribution of Harmonin Isoforms and Their Possible Role in Usher-1 Protein Complexes in Mammalian Photoreceptor Cells

2003

PURPOSE. Human Usher syndrome is the most common form of combined deafness and blindness. Usher type I (USH1), the most severe form, is characterized by profound congenital deafness, constant vestibular dysfunction, and prepubertal onset retinitis pigmentosa. Previous studies have shown that the USH1-proteins myosin VIIa, harmonin, and cadherin 23 interact and form a functional network during hair cell differentiation in the inner ear. The purpose of the present study was to analyze the molecular and cellular functions of these USH1 proteins in the mammalian retina. METHODS. Antibodies to USH1 proteins were generated and used in Western blot analysis of subcellular photoreceptor fractions a…

Gene isoformUsher syndromeBlotting WesternSynaptophysinCell Cycle ProteinsMyosinsBiologyPhotoreceptor cellMiceRetinitis pigmentosaotorhinolaryngologic diseasesmedicineAnimalsProtein IsoformsRats WistarFluorescent Antibody Technique IndirectMicroscopy ImmunoelectronCytoskeletonGeneticsRetinaHair cell differentiationReverse Transcriptase Polymerase Chain ReactionCadherinDyneinsCadherinsmedicine.diseaseeye diseasesRatsCell biologyMice Inbred C57BLCytoskeletal Proteinsmedicine.anatomical_structureMicroscopy FluorescenceMyosin VIIasense organsCarrier ProteinsPhotoreceptor Cells VertebrateSubcellular FractionsInvestigative Opthalmology & Visual Science
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PTHrP in differentiating human mesenchymal stem cells: Transcript isoform expression, promoter methylation, and protein accumulation

2013

Human PTHrP gene displays a complex organization with nine exons producing diverse mRNA variants due to alternative splicing at 5' and 3' ends and the existence of three different transcriptional promoters (P1, P2 and P3), two of which (P2 and P3) contain CpG islands. It is known that the expression of PTHrP isoforms may be differentially regulated in a developmental stage- and tissue-specific manner. To search for novel molecular markers of stemness/differentiation, here we have examined isoform expression in fat-derived mesenchymal stem cells both maintained in stem conditions and induced toward adipo- and osteogenesis. In addition, the expression of the splicing isoforms derived from P2 …

Gene isoformTranscription GeneticPTHrPCellular differentiationpromoter methylationBiologyOsteocytesBiochemistryGene expressionAdipocytesHumansProtein IsoformsadipogenesiSettore BIO/06 - Anatomia Comparata E CitologiaPromoter Regions Geneticmesenchymal stem cellCells CulturedMessenger RNAMesenchymal stem cellAlternative splicingParathyroid Hormone-Related ProteinCell DifferentiationMesenchymal Stem CellsExonsGeneral MedicineMethylationDNA MethylationosteogenesiMolecular biologyIntronsPTHrP; mesenchymal stem cells; osteogenesis; adipogenesis; gene expression; promoter methylationAlternative SplicingSettore BIO/18 - GeneticaGene Expression Regulationgene expressionCpG IslandsStem cellBiochimie
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Systemic Candidiasis and TLR2 Agonist Exposure Impact the Antifungal Response of Hematopoietic Stem and Progenitor Cells.

2018

We have previously demonstrated that Candida albicans induces differentiation of hematopoietic stem and progenitor cells (HSPCs) toward the myeloid lineage both in vitro and in vivo in a TLR2- and Dectin-1-dependent manner, giving rise to functional macrophages. In this work, we used an ex vivo model to investigate the functional consequences for macrophages derived from HSPCs in vivo-exposed to Pam3CSK4 (a TLR2 agonist) or C. albicans infection. Short in vivo treatment of mice with Pam3CSK4 results in a tolerized phenotype of ex vivo HSPC-derived macrophages, whereas an extended Pam3CSK4 treatment confers a trained phenotype. Early during candidiasis, HSPCs give rise to macrophages trained…

0301 basic medicineMicrobiology (medical)medicine.medical_treatmenthematopoietic stem and progenitor cellsImmunologylcsh:QR1-502Colony Count MicrobialBiologyKidneyMicrobiologylcsh:Microbiology03 medical and health sciencesLipopeptidesMiceCandida albicansmedicineTLR2host-pathogen interactionsMacrophageAnimalsProgenitor cellCandida albicansinnate immunityInnate immune systemMacrophagesCandidiasisCell Differentiationbiology.organism_classificationmedicine.diseaseHematopoietic Stem CellsToll-Like Receptor 2Haematopoiesis030104 developmental biologyInfectious DiseasesCytokineImmunologySystemic candidiasisEx vivoSpleenFrontiers in cellular and infection microbiology
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