Search results for "DIFFERENTIATION"

showing 10 items of 1605 documents

DNA damage and repair in the differentiation of stem cells and cells of connective cell lineages: A trigger or a complication?

2021

The review summarizes literature data on the role of DNA breaks and DNA repair in differentiation of pluripotent stem cells (PSC) and connective cell lineages. PSC, including embryonic stem cells (ESC) and induced pluripotent stem cells (iPSC), are rapidly dividing cells with highly active DNA damage response (DDR) mechanisms to ensure the stability and integrity of the DNA. In PSCs, the most common DDR mechanism is error-free homologous recombination (HR) that is primarily active during S phase of the cell cycle, whereas in quiescent, slow-dividing or non-dividing tissue progenitors and terminally differentiated cells, error-prone non-homologous end joining (NHEJ) mechanism of the double-s…

0301 basic medicineHistologyDNA RepairQH301-705.5DNA repairDNA damageCellular differentiationInduced Pluripotent Stem CellsBiophysicsBiologyArticle03 medical and health sciences0302 clinical medicinestem cellsOsteogenesisAnimalsHumansBiology (General)Induced pluripotent stem cellEmbryonic Stem Cellsconnective tissueConnective Tissue CellsDNA BreaksCell DifferentiationCell BiologydifferentiationEmbryonic stem cellCell biology030104 developmental biology030220 oncology & carcinogenesisStem cellHomologous recombinationReprogrammingChondrogenesisEuropean Journal of Histochemistry : EJH
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Macrophage type modulates osteogenic differentiation of adipose tissue MSCs

2017

Since the reconstruction of large bone defects remains a challenge, knowledge about the biology of bone healing is desirable to develop novel strategies for improving the treatment of bone defects. In osteoimmunology, macrophages are the central component in the early stage of physiological response after bone injury and bone remodeling in the late stage. During this process, a switch of macrophage phenotype from pro-inflammatory (M1) to anti-inflammatory (M2) is observed. An appealing option for bone regeneration would be to exploit this regulatory role for the benefit of osteogenic differentiation of osteoprogenitor cells (e.g., mesenchymal stem cells; MSCs) and to eventually utilize this…

0301 basic medicineHistologyMacrophageOsteoimmunologyAdipose tissueBone healingCell CommunicationBiologyBone morphogenetic protein 2Bone remodelingCell LinePathology and Forensic MedicineMSC03 medical and health sciencesCalcification PhysiologicAll institutes and research themes of the Radboud University Medical CenterOsteogenesisOsteogenic differentiationHumansBone regenerationCell ProliferationBone InjuryMacrophagesMesenchymal stem cellCell PolarityCell DifferentiationMesenchymal Stem CellsRegular ArticleCell BiologyAlkaline PhosphataseCoculture TechniquesCell biology030104 developmental biologyReconstructive and regenerative medicine Radboud Institute for Molecular Life Sciences [Radboudumc 10]Adipose TissueGene Expression RegulationCell culture modelImmunologyCytokinesBiomarkersCell and Tissue Research
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Donor age and long-term culture do not negatively influence the stem potential of limbal fibroblast-like stem cells

2016

AbstractBackgroundIn regenerative medicine the maintenance of stem cell properties is of crucial importance. Ageing is considered a cause of reduced stemness capability. The limbus is a stem niche of easy access and harbors two stem cell populations: epithelial stem cells and fibroblast-like stem cells. Our aim was to investigate whether donor age and/or long-term culture have any influence on stem cell marker expression and the profiles in the fibroblast-like stem cell population.MethodsFibroblast-like stem cells were isolated and digested from 25 limbus samples of normal human corneo-scleral rings and long-term cultures were obtained. SSEA4 expression and sphere-forming capability were ev…

0301 basic medicineHomeobox protein NANOGCellular differentiationMedicine (miscellaneous)BiologyStem cell markerBiochemistry Genetics and Molecular Biology (miscellaneous)Settore MED/13 - Endocrinologia03 medical and health sciencesAdult stem cell pluripotency; Fibroblast-like stem cells; Limbal stem cells; Proteomic profile; Regenerative medicineLimbal stem cellStem cell transplantation for articular cartilage repairAdult stem cell pluripotencyInduced stem cellsResearchFibroblast-like stem cellProteomic profileCell BiologyCell biologyEndothelial stem cell030104 developmental biologyRegenerative medicineMolecular MedicineLimbal stem cellsStem cellFibroblast-like stem cellsAdult stem cellStem Cell Research & Therapy
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The DNA methylation profile of human spermatogonia at single-cell- and single-allele-resolution refutes its role in spermatogonial stem cell function…

2019

Human spermatogonial stem cells (hSSCs) have potential in fertility preservation of prepubertal boys or in treatment of male adults suffering from meiotic arrest. Prior to therapeutic application, in vitro propagation of rare hSSCs is mandatory. As the published data points to epigenetic alterations in long-term cell culture of spermatogonia (SPG), an initial characterisation of their DNA methylation state is important. Testicular biopsies from five adult normogonadotropic patients were converted into aggregate-free cell suspensions. FGFR3-positive (FGFR3+) SPG, resembling a very early stem cell state, were labelled with magnetic beads and isolated in addition to unlabelled SPG (FGFR3-). DN…

0301 basic medicineHomeobox protein NANOGMaleEmbryologyBiologyEpigenesis Genetic03 medical and health sciences0302 clinical medicineGeneticsmedicineHumansReceptor Fibroblast Growth Factor Type 3EpigeneticsSpermatogenesisMolecular BiologyAllelesMEG3030219 obstetrics & reproductive medicineKCNQ1OT1Stem CellsObstetrics and GynecologyCell DifferentiationCell BiologyMethylationDNA MethylationMolecular biologySpermatozoaSpermatogonia030104 developmental biologymedicine.anatomical_structureReproductive MedicineDNA methylationGenomic imprintingGerm cellDevelopmental BiologyMolecular human reproduction
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NANOG Plays a Hierarchical Role in the Transcription Network Regulating the Pluripotency and Plasticity of Adipose Tissue-Derived Stem Cells

2017

The stromal vascular cell fraction (SVF) of visceral and subcutaneous adipose tissue (VAT and SAT) has increasingly come into focus in stem cell research, since these compartments represent a rich source of multipotent adipose-derived stem cells (ASCs). ASCs exhibit a self-renewal potential and differentiation capacity. Our aim was to study the different expression of the embryonic stem cell markers NANOG (homeobox protein NANOG), SOX2 (SRY (sex determining region Y)-box 2) and OCT4 (octamer-binding transcription factor 4) and to evaluate if there exists a hierarchal role in this network in ASCs derived from both SAT and VAT. ASCs were isolated from SAT and VAT biopsies of 72 consenting pat…

0301 basic medicineHomeobox protein NANOGembryonic stem cell marker networkAdultMaleRex1regenerative medicineBiologyStem cell markerReal-Time Polymerase Chain ReactionCatalysisArticleSettore MED/13 - Endocrinologiaadipose derived stem cell (ASC); regenerative medicine; embryonic stem cell marker networkInorganic Chemistryadipose derived stem cell (ASC)03 medical and health sciencesSOX2HumansCD90Physical and Theoretical ChemistryMolecular BiologySpectroscopyEmbryonic Stem Cellsreproductive and urinary physiologySOXB1 Transcription FactorsOrganic ChemistryMesenchymal stem cellCell DifferentiationGeneral MedicineNanog Homeobox ProteinMiddle AgedEmbryonic stem cellMolecular biologyAdipose derived stemcell (ASC); stem cell markers Regenerative medicineComputer Science ApplicationsCell biologySettore MED/18 - Chirurgia Generale030104 developmental biologystem cell markers Regenerative medicineAdipose Tissueembryonic structuresFemaleStem cellbiological phenomena cell phenomena and immunityOctamer Transcription Factor-3Adipose derived stemcell (ASC)International Journal of Molecular Sciences; Volume 18; Issue 6; Pages: 1107
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Modulating endothelial adhesion and migration impacts stem cell therapies efficacy

2020

Abstract Background Limited knowledge of stem cell therapies` mechanisms of action hampers their sustainable implementation into the clinic. Specifically, the interactions of transplanted stem cells with the host vasculature and its implications for their therapeutic efficacy are not elucidated. We tested whether adhesion receptors and chemokine receptors on stem cells can be functionally modulated, and consequently if such modulation may substantially affect therapeutically relevant stem cell interactions with the host endothelium. Methods We investigated the effects of cationic molecule polyethylenimine (PEI) treatment with or without nanoparticles on the functions of adhesion receptors a…

0301 basic medicineHomingCell- and Tissue-Based TherapyMedizinCCR4lcsh:MedicineStem cellsMiceChemokine receptor0302 clinical medicineCell MovementCells CulturedMigrationlcsh:R5-920Cell DifferentiationAdhesion; Glioma; Homing; Migration; Stem cells; StrokeGeneral MedicineGlioma3. Good healthCell biologyStrokemedicine.anatomical_structureCellular Microenvironment030220 oncology & carcinogenesisAdhesionStem celllcsh:Medicine (General)Research PaperEndotheliumBiologyMesenchymal Stem Cell TransplantationGeneral Biochemistry Genetics and Molecular BiologyCell LineImmunophenotyping03 medical and health sciencesIn vivoCell AdhesionmedicineAnimalsHumansEndotheliumMesenchymal stem celllcsh:RMesenchymal Stem CellsXenograft Model Antitumor AssaysIn vitroRatsDisease Models Animal030104 developmental biologyBiomarkersStem Cell TransplantationHoming (hematopoietic)EBioMedicine
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Inhibition of tetraspanin functions impairs human papillomavirus and cytomegalovirus infections

2018

Tetraspanins are suggested to regulate the composition of cell membrane components and control intracellular transport, which leaves them vulnerable to utilization by pathogens such as human papillomaviruses (HPV) and cytomegaloviruses (HCMV) to facilitate host cell entry and subsequent infection. In this study, by means of cellular depletion, the cluster of differentiation (CD) tetraspanins CD9, CD63, and CD151 were found to reduce HPV16 infection in HeLa cells by 50 to 80%. Moreover, we tested recombinant proteins or peptides of specific tetraspanin domains on their effect on the most oncogenic HPV type, HPV16, and HCMV. We found that the C-terminal tails of CD63 and CD151 significantly i…

0301 basic medicineHuman cytomegalovirusMaleTelomeraseTetraspaninsviruses610 MedizinCytomegalovirusIC50virus entrylcsh:ChemistryTetraspanin610 Medical scienceshuman papillomaviruslcsh:QH301-705.5SpectroscopyHuman papillomavirus 16virus diseasesGeneral MedicineBiología y Biomedicina / BiologíaEntry into hostComputer Science ApplicationsCytomegalovirus Infectionsembryonic structuresIC<sub>50</sub>HPV16BiologyCatalysisArticleInorganic Chemistry03 medical and health sciencesInhibitory Concentration 50AntigenViral entrymedicineHumansddc:610Physical and Theoretical ChemistryHumanes PapillomavirusMolecular BiologyCluster of differentiationOrganic ChemistryVirus internalizationCytomegalie-VirusIC 50Human papillomavirus virusesmedicine.diseaseVirologyHaCaT030104 developmental biologytetraspaninlcsh:Biology (General)lcsh:QD1-999human cytomegalovirusPeptidesDDC 610 / Medicine &amp; healthblocking peptideHeLa Cells
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Extravascular coagulation in hematopoietic stem and progenitor cell regulation

2018

Abstract The hemostatic system plays pivotal roles in injury repair, innate immunity, and adaptation to inflammatory challenges. We review the evidence that these vascular-protective mechanisms have nontraditional roles in hematopoietic stem cell (HSC) maintenance in their physiological bone marrow (BM) niches at steady-state and under stress. Expression of coagulation factors and the extrinsic coagulation initiator tissue factor by osteoblasts, tissue-resident macrophages, and megakaryocytes suggests that endosteal and vascular HSC niches are functionally regulated by extravascular coagulation. The anticoagulant endothelial protein C receptor (EPCR; Procr) is highly expressed by primitive …

0301 basic medicineImmunologyBone Marrow Cells030204 cardiovascular system & hematologyBiologyThrombomodulinBiochemistry03 medical and health sciences0302 clinical medicineBone MarrowStress PhysiologicalmedicineAnimalsHumansThromboplastinStem Cell NicheProgenitor cellBlood CoagulationEndothelial protein C receptorReview SeriesHematopoietic Stem Cell TransplantationHematopoietic stem cellCell DifferentiationCell BiologyHematologyHematopoietic Stem CellsHematopoiesisCell biologyHaematopoiesis030104 developmental biologymedicine.anatomical_structureStem cellBiomarkersFibrinolytic agentSignal TransductionBlood
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HSP110 sustains chronic NF-κB signaling in activated B cell diffuse large B cell lymphoma through MyD88 stabilization

2018

International audience; Activated B cell diffuse large B cell lymphoma (ABC-DLBCL) is an aggressive lymphoproliferative disorder involving chronic NF-κB activation. Several mutations in the BCR and the MyD88 signaling pathway components, such as MyD88 L265P, are implicated in this aberrant activation. Among heat-shock proteins, HSP110 has recently been identified as a pro- survival and/or proliferation factor in many cancers but its role in ABC-DLBCL survival mechanisms remained to be established. We observed that shRNA-mediated HSP110 silencing decreased the survival of several ABC-DLBCL cell lines, decreased IgM-MyD88 co-localization and subsequent NF-κB signaling. Conversely, over-expres…

0301 basic medicineImmunology[SDV.CAN]Life Sciences [q-bio]/CancerBiochemistry[ SDV.CAN ] Life Sciences [q-bio]/CancerCohort Studies03 medical and health sciencesimmune system diseaseshemic and lymphatic diseasesmedicineTumor Cells CulturedGene silencingHumansHSP110 Heat-Shock ProteinsB cellChemistryProtein StabilityWild typebreakpoint cluster regionNF-kappa BCell BiologyHematologymedicine.disease3. Good healthLymphoma030104 developmental biologymedicine.anatomical_structureCell cultureMyeloid Differentiation Factor 88Cancer researchLymphoma Large B-Cell DiffuseSignal transductionDiffuse large B-cell lymphomaSignal Transduction
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2020

β-thalassemia major (β-TM) is an inherited hemoglobinopathy caused by a quantitative defect in the synthesis of β-globin chains of hemoglobin, leading to the accumulation of free a-globin chains that aggregate and cause ineffective erythropoiesis. We have previously demonstrated that terminal erythroid maturation requires a transient activation of caspase-3 and that the chaperone Heat Shock Protein 70 (HSP70) accumulates in the nucleus to protect GATA-1 transcription factor from caspase-3 cleavage. This nuclear accumulation of HSP70 is inhibited in human β-TM erythroblasts due to HSP70 sequestration in the cytoplasm by free a-globin chains, resulting in maturation arrest and apoptosis. Like…

0301 basic medicineIneffective erythropoiesisbiologyChemistryCellular differentiationMutantHematologymedicine.disease_causeHsp70Cell biology03 medical and health sciences030104 developmental biology0302 clinical medicineCytoplasmhemic and lymphatic diseases030220 oncology & carcinogenesisChaperone (protein)biology.proteinmedicineErythropoiesisTranscription factorHaematologica
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