Search results for "Cellular Reprogramming"

showing 10 items of 34 documents

Efficient Reprogramming of Human Fibroblasts and Blood-Derived Endothelial Progenitor Cells Using Nonmodified RNA for Reprogramming and Immune Evasion

2015

mRNA reprogramming results in the generation of genetically stable induced pluripotent stem (iPS) cells while avoiding the risks of genomic integration. Previously published mRNA reprogramming protocols have proven to be inconsistent and time-consuming and mainly restricted to fibroblasts, thereby demonstrating the need for a simple but reproducible protocol applicable to various cell types. So far there have been no published reports using mRNA to reprogram any cell type derived from human blood. Nonmodified synthetic mRNAs are immunogenic and activate cellular defense mechanisms, which can lead to cell death and inhibit mRNA translation upon repetitive transfection. Hence, to overcome RNA…

Homeobox protein NANOGCellular Reprogramming TechniquesInduced Pluripotent Stem CellsVaccinia virusFibroblastsBiologyTransfectionLIN28Molecular biologyCell biologyKruppel-Like Factor 4MicroRNAsSOX2KLF4GeneticsHumansMolecular MedicineCellular Reprogramming TechniquesRNA MessengerProgenitor cellInduced pluripotent stem cellMolecular BiologyReprogrammingEndothelial Progenitor CellsImmune EvasionHuman Gene Therapy
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Direct conversion of human fibroblast to hepatocytes using a single inducible polycistronic vector

2019

Abstract Background Human fibroblasts can be reprogrammed into induced hepatocyte-like cells through the expression of a set of transcription factors. Although the generation of induced hepatocyte-like cells by HNF4A, HNF1A, and FOXA3 expression has proven to be a robust experimental strategy, using multiple lentivirus results in a highly variable heterogeneous population. Methods We designed and implemented a novel approach based on the delivery of reprogramming factors and green fluorescent protein in a single doxycycline-inducible lentiviral vector using 2A self-cleaving peptides. Results Fibroblasts infected with the lentiviral vector can be amplified in basic fibroblast culture media i…

Male0301 basic medicineInducibleGenetic VectorsGreen Fluorescent ProteinsMedicine (miscellaneous)Biochemistry Genetics and Molecular Biology (miscellaneous)Cell LineViral vectorGreen fluorescent proteinlcsh:BiochemistryMice03 medical and health sciences0302 clinical medicinePolycistronic vectorsmedicineAnimalsHumanslcsh:QD415-436TransgenesFibroblastGeneTranscription factorlcsh:R5-920ChemistryResearchReprogrammingDermisCell BiologyFibroblastsCellular ReprogrammingCell biologyInduced hepatocyte-like cellsiHEPPhenotype030104 developmental biologymedicine.anatomical_structureGenes030220 oncology & carcinogenesisDoxycyclineHepatocytesMolecular MedicineFOXA3Stem celllcsh:Medicine (General)ReprogrammingStem Cell Research & Therapy
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Adipose stem cell niche reprograms the colorectal cancer stem cell metastatic machinery.

2021

Obesity is a strong risk factor for cancer progression, posing obesity-related cancer as one of the leading causes of death. Nevertheless, the molecular mechanisms that endow cancer cells with metastatic properties in patients affected by obesity remain unexplored. Here, we show that IL-6 and HGF, secreted by tumor neighboring visceral adipose stromal cells (V-ASCs), expand the metastatic colorectal (CR) cancer cell compartment (CD44v6 + ), which in turn secretes neurotrophins such as NGF and NT-3, and recruits adipose stem cells within tumor mass. Visceral adipose-derived factors promote vasculogenesis and the onset of metastatic dissemination by activation of STAT3, which inhibits miR-200…

MaleCancer microenvironmentobesityStromal cellColorectal cancerScienceSettore MED/50 - Scienze Tecniche Mediche ApplicateGeneral Physics and AstronomyAdipose tissueMice SCIDSCIDmetastasis.General Biochemistry Genetics and Molecular BiologyArticleMiceVasculogenesisSettore MED/04 - PATOLOGIA GENERALEmedicineAnimalsHumansNeoplasm MetastasisStem Cell NicheZinc Finger E-box Binding Homeobox 2Tumor microenvironmentMultidisciplinarybusiness.industryHepatocyte Growth FactorInterleukin-6Stem CellsQadipose stromal cellCancerCD44v6General Chemistrymedicine.diseaseCellular ReprogrammingColorectal cancerMicroRNAsAdipose TissueCancer cellColonic NeoplasmsCancer researchNeoplastic Stem Cellsconsensus molecular subtypeStem cellSettore MED/46 - Scienze Tecniche Di Medicina Di LaboratoriobusinessNature communications
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Stage-specific germ-cell marker genes are expressed in all mouse pluripotent cell types and emerge early during induced pluripotency.

2011

Embryonic stem cells (ESCs) generated from the in-vitro culture of blastocyst stage embryos are known as equivalent to blastocyst inner cell mass (ICM) in-vivo. Though several reports have shown the expression of germ cell/pre-meiotic (GC/PrM) markers in ESCs, their functional relevance for the pluripotency and germ line commitment are largely unknown. In the present study, we used mouse as a model system and systematically analyzed the RNA and protein expression of GC/PrM markers in ESCs and found them to be comparable to the expression of cultured pluripotent cells originated from the germ line. Further, siRNA knockdown experiments have demonstrated the parallel maintenance and independen…

MaleMouselcsh:MedicineGene ExpressionEmbryoid bodyCell Fate DeterminationMice0302 clinical medicineMolecular Cell BiologyNuclear Reprogramminglcsh:ScienceInduced pluripotent stem cellPromoter Regions Genetic0303 health sciencesMultidisciplinaryStem CellsGene Expression Regulation DevelopmentalAnimal ModelsCellular ReprogrammingChromatinChromatinMeiosismedicine.anatomical_structureBlastocyst Inner Cell Massembryonic structuresEpigeneticsBiological MarkersFemaleGerm cellResearch ArticleBivalent chromatinInduced Pluripotent Stem CellsBiologyCell Line03 medical and health sciencesModel OrganismsGeneticsmedicineAnimalsRNA MessengerGene NetworksEmbryonic stem cells (ESCs); germ layer cell typesBiology030304 developmental biologylcsh:RMolecular DevelopmentMolecular biologyEmbryonic stem cellGerm Cellslcsh:QGene FunctionChromatin immunoprecipitationBiomarkers030217 neurology & neurosurgeryDevelopmental Biology
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Translational read-through of the RP2 Arg120stop mutation in patient iPSC-derived retinal pigment epithelium cells.

2014

Mutations in the RP2 gene lead to a severe form of X-linked retinitis pigmentosa. RP2 patients frequently present with nonsense mutations and no treatments are currently available to restore RP2 function. In this study, we reprogrammed fibroblasts from an RP2 patient carrying the nonsense mutation c.519C>T (p.R120X) into induced pluripotent stem cells (iPSC), and differentiated these cells into retinal pigment epithelial cells (RPE) to study the mechanisms of disease and test potential therapies. RP2 protein was undetectable in the RP2 R120X patient cells, suggesting a disease mechanism caused by complete lack of RP2 protein. The RP2 patient fibroblasts and iPSC-derived RPE cells showed phe…

MaleNonsense mutationInduced Pluripotent Stem CellsGene ExpressionRetinal Pigment EpitheliumBiologymedicine.disease_causeBioinformaticschemistry.chemical_compoundYoung AdultGTP-Binding ProteinsRetinitis pigmentosaGeneticsmedicineHumansCiliaFibroblastInduced pluripotent stem cellEye ProteinsMolecular BiologyGenetics (clinical)MutationOxadiazolesRetinal pigment epitheliumIntracellular Signaling Peptides and ProteinsMembrane ProteinsRetinalCell DifferentiationEpithelial CellsGeneral MedicineArticlesFibroblastsmedicine.diseaseCellular Reprogramming3. Good healthAtalurenCell biologyProtein Transportmedicine.anatomical_structurePhenotypechemistryProtein BiosynthesisMutationHuman molecular genetics
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Reawakening the sleeping beauty in the adult brain: neurogenesis from parenchymal glia

2015

Life-long neurogenesis is highly restricted to specialized niches in the adult mammalian brain and therefore the brain's capacity for spontaneous regeneration is extremely limited. However, recent work has demonstrated that under certain circumstances parenchymal astrocytes and NG2 glia can generate neuronal progeny. In the striatum, stroke or excitotoxic lesions can reawaken in astrocytes a latent neurogenic program resulting in the genesis of new neurons. By contrast, in brain areas that fail to mount a neurogenic response following injury, such as the cerebral cortex, forced expression of neurogenic reprogramming factors can lineage convert local glia into induced neurons. Yet, injury-in…

NeurogenesisStriatumBiologyParenchymaGeneticsmedicineAnimalsHumansRegenerationNeuronsRegulation of gene expressionRegeneration (biology)NeurogenesisGene Expression Regulation DevelopmentalAnatomyCellular Reprogrammingmedicine.anatomical_structurenervous systemCerebral cortexAstrocytesBrain InjuriesNeurogliaNeurogliaNeuroscienceReprogrammingDevelopmental BiologyCurrent Opinion in Genetics & Development
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Polycomb-like 2 Associates with PRC2 and Regulates Transcriptional Networks during Mouse Embryonic Stem Cell Self-Renewal and Differentiation

2010

SummaryPolycomb group (PcG) proteins are conserved epigenetic transcriptional repressors that control numerous developmental gene expression programs and have recently been implicated in modulating embryonic stem cell (ESC) fate. We identified the PcG protein PCL2 (polycomb-like 2) in a genome-wide screen for regulators of self-renewal and pluripotency and predicted that it would play an important role in mouse ESC-fate determination. Using multiple biochemical strategies, we provide evidence that PCL2 is a Polycomb Repressive Complex 2 (PRC2)-associated protein in mouse ESCs. Knockdown of Pcl2 in ESCs resulted in heightened self-renewal characteristics, defects in differentiation, and alte…

Pluripotent Stem CellsCellular differentiationGene regulatory networkDown-RegulationPolycomb-Group Proteinsmacromolecular substancesMethylationBiochemistryArticleCell LineHistonesSelf-RenewalMice03 medical and health sciences0302 clinical medicineEmbryonic Stem CellHistone methylationPolycomb-group proteinsGeneticsAnimalsGene Regulatory NetworksEpigeneticsInduced pluripotent stem cellEmbryonic Stem Cells030304 developmental biologyGenetics0303 health sciencesbiologyurogenital systemGene Expression ProfilingPolycomb Repressive Complex 2Cell DifferentiationCell BiologyCellular ReprogrammingSTEMCELLPRC2Embryonic stem cellRepressor ProteinsOncologyDifferentiation030220 oncology & carcinogenesisembryonic structuresbiology.proteinMolecular MedicineTranscriptional NetworkPRC2Genome-Wide Association StudyProtein BindingCell Stem Cell
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Gata4 Blocks Somatic Cell Reprogramming By Directly Repressing Nanog

2012

Abstract Somatic cells can be reprogrammed to induced pluripotent stem (iPS) cells by ectopic expression of the four factors Oct4, Klf4, Sox2, and Myc. Here, we investigated the role of Gata4 in the reprogramming process and present evidence for a negative role of this family of transcription factors in the induction of pluripotency. Coexpression of Gata4 with Oct4, Klf4, and Sox2 with or without Myc in mouse embryonic fibroblasts greatly impaired reprogramming and endogenous Nanog expression. The lack of Nanog upregulation was associated with a blockade in the transition from the initiation phase of reprogramming to the full pluripotent state characteristic of iPS cells. Addition of Nanog …

Pluripotent Stem CellsTranscriptional ActivationHomeobox protein NANOGChromatin ImmunoprecipitationTranscription GeneticRex1Kruppel-Like Transcription FactorsDown-RegulationElectrophoretic Mobility Shift AssayBiologyCell LineProto-Oncogene Proteins c-mycKruppel-Like Factor 4MiceSOX2AnimalsRNA MessengerRNA Small InterferingInduced pluripotent stem cellEmbryonic Stem Cellsreproductive and urinary physiologyHomeodomain ProteinsSOXB1 Transcription FactorsNanog Homeobox ProteinCell DifferentiationNanog Homeobox ProteinCell BiologyCellular ReprogrammingEmbryonic stem cellGATA4 Transcription FactorKLF4embryonic structuresHepatocyte Nuclear Factor 3-betaCancer researchMolecular MedicineRNA Interferencebiological phenomena cell phenomena and immunityOctamer Transcription Factor-3ReprogrammingDevelopmental BiologyStem Cells
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Reprogrammed induced pluripotent stem cells: how suitable could they be in reproductive medicine?

2008

Human embryonic stem cells have the greatest potential for regenerative and reproductive medicine; unfortunately, their full application is limited by ethical and technical problems. In order to overcome these problems and get patient specific pluripotent cells from somatic cells, the field of reprogramming has moved to the generation of induced pluripotent stem cells by overexpression of four transcription factors after viral infection of the patient's somatic cells. In the present paper we review the limitations and milestones of this technique in both regenerative and reproductive medicine.

Pluripotent Stem Cellsmedicine.medical_specialtySomatic cellReproductive medicineObstetrics and GynecologyBiologyPatient specificCellular ReprogrammingRegenerative MedicineModels BiologicalEmbryonic stem cellGermlineCell biologyReproductive MedicineImmunologymedicineHumansStem cellInduced pluripotent stem cellReprogrammingFertility and Sterility
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CEND1 and NEUROGENIN2 Reprogram Mouse Astrocytes and Embryonic Fibroblasts to Induced Neural Precursors and Differentiated Neurons

2015

Summary Recent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogrammed into functional neurons through forced expression of neurogenic factors. Here we explored the effect of CEND1 and NEUROG2 on reprogramming of mouse cortical astrocytes and embryonic fibroblasts. Forced expression of CEND1, NEUROG2, or both resulted in acquisition of induced neuronal cells expressing subtype-specific markers, while long-term live-cell imaging highlighted the existence of two different modes of neuronal trans-differentiation. Of note, a subpopulation of CEND1 and NEUROG2 double-transduced astrocytes formed spheres exhibiting neural stem cell properties. mRNA and protein exp…

Somatic cellCellular differentiationNerve Tissue ProteinsEndogenyBiologyBiochemistryArticleMiceNeural Stem CellsBasic Helix-Loop-Helix Transcription FactorsGeneticsAnimalslcsh:QH301-705.5NeuronsGene knockdownMessenger RNAlcsh:R5-920Membrane ProteinsCell DifferentiationCell BiologyFibroblastsCellular ReprogrammingEmbryo MammalianEmbryonic stem cellNeural stem cellCell biologylcsh:Biology (General)Astrocytesembryonic structureslcsh:Medicine (General)ReprogrammingDevelopmental BiologyStem Cell Reports
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