Search results for "Cell Lineage"

showing 6 items of 126 documents

Germinal center B cells govern their own fate via antibody feedback

2013

High-affinity antibodies reenter germinal centers (GCs) and limit antigen access, thus causing sustained directional evolution in GCs toward higher-affinity antibody production.

endocrine systemImmunologyB-cell receptorAntibody AffinityPlasma cellBiologyAntibodiesAffinity maturationMice03 medical and health sciences0302 clinical medicinehealth services administrationpolycyclic compoundsmedicineAnimalsImmunology and AllergyCell LineageAntigen-presenting cell030304 developmental biologyB-Lymphocytes0303 health sciencesB cell selectionBrief Definitive ReportGerminal centerGerminal CenterMolecular biology3. Good healthMice Inbred C57BLB-1 cellmedicine.anatomical_structurePolyclonal B cell responsesense organshormones hormone substitutes and hormone antagonistsDendritic Cells Follicular030215 immunologyJournal of Experimental Medicine
researchProduct

Systems level approach reveals the correlation of endoderm differentiation of mouse embryonic stem cells with specific microstructural cues of fibrin…

2014

Stem cells receive numerous cues from their associated substrate that help to govern their behaviour. However, identification of influential substrate characteristics poses difficulties because of their complex nature. In this study, we developed an integrated experimental and systems level modelling approach to investigate and identify specific substrate features influencing differentiation of mouse embryonic stem cells (mESCs) on a model fibrous substrate, fibrin. We synthesized a range of fibrin gels by varying fibrinogen and thrombin concentrations, which led to a range of substrate stiffness and microstructure. mESCs were cultured on each of these gels, and characterization of the diff…

fibrin substrateCellular differentiationCell Culture TechniquesBiomedical EngineeringBiophysicsBioengineeringBiochemistryregression analysisFibrinBiomaterialsMiceTissue engineeringmedicineAnimalsCell Lineagemicrostructural topologyResearch ArticlesCells CulturedEmbryonic Stem CellsFibrinTissue EngineeringTissue ScaffoldsbiologyEndodermSubstrate (chemistry)systems level modellingCell Differentiationdifferentiationembryonic stem cellEmbryonic stem cellMolecular biologyCell biologymedicine.anatomical_structureCell culturebiology.proteinStem cellEndodermGelsBiotechnologyJournal of The Royal Society Interface
researchProduct

Author response: PTEN negatively regulates the cell lineage progression from NG2+ glial progenitor to oligodendrocyte via mTOR-independent signaling

2018

medicine.anatomical_structurebiology.proteinmedicinePTENCell lineageBiologyPI3K/AKT/mTOR pathwayOligodendrocyteCell biologyProgenitor
researchProduct

Tetralogy of Fallot as a Model to Study Cardiac Progenitor Cell Migration and Differentiation During Heart Development

2009

Tetralogy of Fallot (ToF) has long been considered a congenital disorder that occurs due to environmental alterations during gestation. Recently, several mutated genes have been discovered that are thought to be responsible for the malformations observed in ToF. These genetic mutations, which are microdeletions, are sporadic and are frequently also present in trisomy 21 patients. The ToF malformations can be lethal, but for the last 50 years, surgical repairs that place an artificial patch to repair the four features of ToF have improved the survival of patients with ToF. However, 0.5% to 6% of patients who survive after surgical repair of ToF die of sudden cardiac death caused by ventricul…

medicine.medical_specialtyOrganogenesisBiologyVentricular tachycardiaSudden cardiac deathHomeobox protein Nkx-2.5Cell MovementInternal medicinemedicineAnimalsHumansCell LineageCell ProliferationTetralogy of FallotHomeodomain ProteinsSurgical repairHeart developmentMyocardiumStem CellsGene Expression Regulation DevelopmentalCell DifferentiationToF Cardiac Stem Cellsmedicine.diseaseGATA4 Transcription Factormedicine.anatomical_structureVentricleMutationHomeobox Protein Nkx-2.5Tetralogy of FallotCardiologyCardiology and Cardiovascular MedicineTranscription FactorsCongenital disorderTrends in Cardiovascular Medicine
researchProduct

Transcription factors controlling development and function of innate lymphoid cells.

2014

Abstract Innate lymphoid cells (ILCs) are a heterogeneous group of lymphocytes, which play an important role in tissue homeostasis at epithelial surfaces. They are scarce in spleen and lymph nodes, but substantial numbers can be found in the intestinal mucosa even at steady state. There, they represent the first line of defence against invading pathogens and contribute to lymphorganogenesis, tissue repair and, when inappropriately activated, immune pathology. Lineage-specific development, function and maintenance of these cells depend on a restricted set of transcription factors that partially emerged as a result of diversification and selection during vertebrate evolution. The differential…

medicine.medical_treatmentImmunologyBiologyLymphocyte ActivationIntestinal mucosaRAR-related orphan receptor gammamedicineTranscriptional regulationImmunology and AllergyAnimalsHomeostasisHumansCell LineageLymphopoiesisLymphocytesIntestinal MucosaTranscription factorTissue homeostasisInnate lymphoid cellGene Expression Regulation DevelopmentalCell DifferentiationGeneral MedicineBiological EvolutionImmunity InnateCytokineImmunologyHost-Pathogen InteractionsCytokinesInterleukin Receptor Common gamma SubunitTranscription FactorsInternational immunology
researchProduct

The hypothetical ancestral animal the Urmetazoa: Telomerase activity in sponges [Porifera]

2003

Sponges (Porifera) represent the lowest metazoan phylum, characterized by a pronounced plasticity in the determination of cell lineages, and they are the closest related taxon to the hypothetical ancestral animal, the Urmetazoa, from which the metazoan lineages diverged. In a first approach to elucidate the molecular mechanisms controlling the switch from the cell lineage with a putative indefinite growth capacity to senescent, somatic cells, the activity of the telomerase as an indicator for immortality has been determined. The studies were performed with the marine demosponges Suberites domuncula and Geodia cydonium, in vivo with tissue but also in vitro using the primmorph system. Primmo…

suberites domunculaTelomeraseProgrammed cell deathsenescencebiologySomatic cellLineage (evolution)CellGeneral Chemistrybiology.organism_classificationtelomerestelomeraseCell biologyTelomereSuberites domunculaurmetazoa.lcsh:ChemistrySpongeprimmorphsmedicine.anatomical_structurelcsh:QD1-999geodia cydoniummedicinecell lineagesJournal of the Serbian Chemical Society
researchProduct