Search results for "STEM CELLS"

showing 10 items of 1108 documents

Progenitor death drives retinal dysplasia and neuronal degeneration in a mouse model of Atrip-Seckel syndrome

2020

ABSTRACT Seckel syndrome is a type of microcephalic primordial dwarfism (MPD) that is characterized by growth retardation and neurodevelopmental defects, including reports of retinopathy. Mutations in key mediators of the replication stress response, the mutually dependent partners ATR and ATRIP, are among the known causes of Seckel syndrome. However, it remains unclear how their deficiency disrupts the development and function of the central nervous system (CNS). Here, we investigated the cellular and molecular consequences of ATRIP deficiency in different cell populations of the developing murine neural retina. We discovered that conditional inactivation of Atrip in photoreceptor neurons …

lcsh:MedicineMedicine (miscellaneous)315BlindnessMicechemistry.chemical_compoundImmunology and Microbiology (miscellaneous)Cell DeathneurodevelopmentStem CellsNeurodegenerationapoptosisneurodegenerationSyndromeCell biologyDNA-Binding Proteinsdna damage responsemedicine.anatomical_structurePhotoreceptor Cells VertebrateResearch Articlelcsh:RB1-214NeurogenesisNeuroscience (miscellaneous)Embryonic DevelopmentBiologyRetinaGeneral Biochemistry Genetics and Molecular Biologylcsh:PathologymedicineAnimalsAbnormalities MultipleProgenitor cellVision OcularAdaptor Proteins Signal TransducingCell ProliferationProgenitorRetinalcsh:RRetinalEmbryo Mammalianmedicine.diseasephotoreceptorDisease Models AnimalSeckel syndromechemistryvisual system developmentNerve DegenerationRetinal dysplasiaRetinal DysplasiaTumor Suppressor Protein p53Primordial dwarfismDNA DamageDisease Models & Mechanisms
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Cytocompatibility and Bioactive Properties of Hydraulic Calcium Silicate-Based Cements (HCSCs) on Stem Cells from Human Exfoliated Deciduous Teeth (S…

2020

The implementation of hydraulic calcium silicate-based endodontic cements (HCSCs) in biologically based endodontic procedures for the primary dentition has been recently investigated, focusing on the biological response of stem cells from human exfoliated deciduous teeth (SHEDs) towards them. The present systematic review aimed to present a qualitative synthesis of the available literature consisting of in vitro assays, which assessed the cytocompatibility and bioactive properties of HCSCs in direct contact with SHEDs. Following the PRISMA statement, an electronic database search was carried out in Medline, Scopus, Embase, Web of Science, and SciELO on March 31st and updated on November 16t…

lcsh:MedicineReview03 medical and health scienceschemistry.chemical_compound0302 clinical medicinecalcium silicate cementsDeciduous teethMedicinedental stem cellsViability assayProroot mtacell viability030304 developmental biology0303 health sciencesbusiness.industrylcsh:RIn vitro toxicology030206 dentistryGeneral MedicineIn vitromedicine.anatomical_structurechemistrybioceramicbioactivityCalcium silicateCancer researchStem cellNodule formationbusinessJournal of Clinical Medicine
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Stem cell populations in the heart and the role of Isl1 positive cells

2013

Cardiac progenitor cells are multipotent stem cells isolated from both embryonic and adult hearts in several species and are able to differentiate at least into smooth muscle cells, endothelial cells and cardiomyocytes. The embryonic origin of these cells has not yet been demonstrated, but it has been suggested that these cells may derive from the first and secondary heart fields and from the neural crest. In the last decade, two diffe-rent populations of cardiac progenitor or stem cells have been identified and isolated, i.e., the Islet1 positive (Isl1+) and c-Kit positive (c-Kit+)/Stem Cell Antigen-1 positive (Sca-1+) cells. Until 2012, these two populations have been considered two separ…

lineagesHistologymuscleLIM-Homeodomain ProteinsBiophysicscardiac progenitor cellsheartBiologycardiac progenitor cells stem cells heart lineages biology muscle.stem cellsHumansProgenitor celllcsh:QH301-705.5Induced stem cellsViews and CommentsbiologySettore BIO/16 - Anatomia UmanaMyocardiumCell BiologyCell biologyEndothelial stem cellP19 celllcsh:Biology (General)Gene Expression RegulationMultipotent Stem CellAmniotic epithelial cellsImmunologycardiac progenitor cells stem-cells heart lineages biology muscle.Stem cellAdult stem cellTranscription Factors
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Hardwiring the Brain: Endocannabinoids Shape Neuronal Connectivity

2007

The roles of endocannabinoid signaling during central nervous system development are unknown. We report that CB 1 cannabinoid receptors (CB 1 Rs) are enriched in the axonal growth cones of γ-aminobutyric acid–containing (GABAergic) interneurons in the rodent cortex during late gestation. Endocannabinoids trigger CB 1 R internalization and elimination from filopodia and induce chemorepulsion and collapse of axonal growth cones of these GABAergic interneurons by activating RhoA. Similarly, endocannabinoids diminish the galvanotropism of Xenopus laevis spinal neurons. These findings, together with the impaired target selection of cortical GABAergic interneurons lacking CB 1 Rs, identify endoc…

medicine.medical_specialtyCannabinoid receptorGrowth ConesSynaptogenesisXenopus ProteinsBiologyRats Sprague-DawleyMiceXenopus laevisReceptor Cannabinoid CB1ChemorepulsionCell MovementInterneuronsInternal medicineCannabinoid Receptor ModulatorsmedicineAnimalsAxonGrowth coneCells CulturedIn Situ Hybridizationgamma-Aminobutyric AcidUltrasonographyCerebral CortexMicroscopy ConfocalMultidisciplinaryStem Cellsmusculoskeletal neural and ocular physiologyEndocannabinoid systemAxonsRatsMice Inbred C57BLEndocrinologymedicine.anatomical_structurenervous systemSynapsesGABAergiclipids (amino acids peptides and proteins)Axon guidanceNeuroscienceEndocannabinoidsSignal TransductionScience
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Cationic lipide mediated transfer of c-abl and bcr antisense oligonucleotides to immature normal myeloid cells: Uptake, biological effects and modula…

1996

Uptake and biochemical and biological effects of antisense oligodeoxynucleotides (ODN) specific for c-abl and bcr genes were studied in normal immature myeloid cells. CD34-positive cells were purified by positive and negative selection and cultured in liquid culture for 7 days. These cells were then incubated with ODNs, either alone or in combination with cationic lipids. The uptake of ODNs was enhanced by the use of cationic lipids. In addition, very low concentrations of ODNs in combination with cationic lipids were capable of specifically inhibiting the expression of the c-abl gene. In contrast, no effects were seen on the expression of bcr. However, despite the effective blocking of c-a…

medicine.medical_specialtyCell Membrane PermeabilityChemical PhenomenaMolecular Sequence DataRibonuclease HAntigens CD34BiologyTransfectionPolymerase Chain ReactionCationsProto-Oncogene Proteinshemic and lymphatic diseasesInternal medicineGene expressionmedicineHumansCation Exchange ResinsRNA NeoplasmProto-Oncogene Proteins c-ablGeneCells CulturedOncogene ProteinsABLHematologyBase SequenceCell-Free SystemChemistry PhysicalCell growthCationic polymerizationbreakpoint cluster regionBiological Transporthemic and immune systemsHematologyGeneral MedicineOligonucleotides AntisenseProtein-Tyrosine Kinasesrespiratory systemHematopoietic Stem CellsLipidsMolecular biologyHaematopoiesisGene Expression RegulationDepression ChemicalLiposomesProto-Oncogene Proteins c-bcrAnnals of Hematology
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The CB1 cannabinoid receptor mediates excitotoxicity-induced neural progenitor proliferation and neurogenesis.

2007

Endocannabinoids are lipid signaling mediators that exert an important neuromodulatory role and confer neuroprotection in several types of brain injury. Excitotoxicity and stroke can induce neural progenitor (NP) proliferation and differentiation as an attempt of neuroregeneration after damage. Here we investigated the mechanism of hippocampal progenitor cell engagement upon excitotoxicity induced by kainic acid administration and the putative involvement of the CB1 cannabinoid receptor in this process. Adult NPs express kainate receptors that mediate proliferation and neurosphere generation in vitro via CB1 cannabinoid receptors. Similarly, in vivo studies showed that excitotoxicity-induce…

medicine.medical_specialtyKainic acidCannabinoid receptorNeurotoxinsExcitotoxicityKainate receptorBiologymedicine.disease_causeBiochemistryNeuroprotectionHippocampuschemistry.chemical_compoundMiceReceptor Cannabinoid CB1Epidermal growth factorInternal medicinemedicineAnimalsMolecular BiologyCell ProliferationMice KnockoutNeuronsKainic AcidStem CellsNeurogenesisCell BiologyEndocannabinoid systemCell biologyNerve RegenerationEndocrinologynervous systemchemistrylipids (amino acids peptides and proteins)Fibroblast Growth Factor 2The Journal of biological chemistry
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An O2-sensitive glomus cell-stem cell synapse induces carotid body growth in chronic hypoxia.

2013

Summary Neural stem cells (NSCs) exist in germinal centers of the adult brain and in the carotid body (CB), an oxygen-sensing organ that grows under chronic hypoxemia. How stem cell lineage differentiation into mature glomus cells is coupled with changes in physiological demand is poorly understood. Here, we show that hypoxia does not affect CB NSC proliferation directly. Rather, mature glomus cells expressing endothelin-1, the O 2 -sensing elements in the CB that secrete neurotransmitters in response to hypoxia, establish abundant synaptic-like contacts with stem cells, which express endothelin receptors, and instruct their growth. Inhibition of glomus cell transmitter release or their sel…

medicine.medical_specialtyMice TransgenicBiologyGeneral Biochemistry Genetics and Molecular BiologyProlyl HydroxylasesMiceGlomus cellNeural Stem CellsInternal medicinemedicineAnimalsRats WistarCell ProliferationCarotid BodyCell growthBiochemistry Genetics and Molecular Biology(all)Germinal centerCell DifferentiationHypoxia (medical)Respiratory CenterNeural stem cellRatsOxygenEndocrinologymedicine.anatomical_structureCarotid bodyStem cellmedicine.symptomEndothelin receptorCell
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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
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Somatic stem cells and tissue engineering shed light on unsolved clinical issues in reproductive medicine: in stem cells we trust

2012

Three experts in regenerative medicine explore the evidence and expanding future clinical applicability of the human ovarian and endometrial stem cell population, and tissue engineering of reproductive organs and tissues.

medicine.medical_specialtyPathologyTissue EngineeringStem CellsStem cell populationReproductive medicineObstetrics and GynecologyBiologyRegenerative MedicineBioinformaticsRegenerative medicineAdult Stem CellsReproductive MedicineTissue engineeringmedicineHumansArtificial OrgansStem cellAdult stem cellFertility and Sterility
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Biological interactions between calcium silicate-based endodontic biomaterials and periodontal ligament stem cells: A systematic review of in vitro s…

2021

Background Most recently, the biological interactions, that is cytocompatibility, cell differentiation and mineralization potential, between calcium silicate-based biomaterials and periodontal ligament stem cells (PDLSCs) have been studied at an in vitro level, in order to predict their clinical behaviour during endodontic procedures involving direct contact with periodontal tissues, namely root canal treatment, endodontic surgery and regenerative endodontic treatment. Objective The aim of the present systematic review was to present a qualitative synthesis of available in vitro studies assessing the biological interaction of PDLSCs and calcium silicate-based biomaterials. Methodology The p…

medicine.medical_specialtyPeriodontal ligament stem cellsBiocompatibilitybusiness.industryPeriodontal Ligamentmedicine.medical_treatmentSilicatesStem CellsDentistryBiocompatible MaterialsStem-cell therapyCalcium CompoundsEndodonticsIn vitroRoot Canal Filling Materialschemistry.chemical_compoundchemistryBiological propertyCalcium silicatemedicineStem cellbusinessGeneral DentistryInternational endodontic journalREFERENCES
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