Search results for "Embryon"

showing 10 items of 988 documents

miR-133a Enhances the Protective Capacity of Cardiac Progenitors Cells after Myocardial Infarction

2014

Summary miR-133a and miR-1 are known as muscle-specific microRNAs that are involved in cardiac development and pathophysiology. We have shown that both miR-1 and miR-133a are early and progressively upregulated during in vitro cardiac differentiation of adult cardiac progenitor cells (CPCs), but only miR-133a expression was enhanced under in vitro oxidative stress. miR-1 was demonstrated to favor differentiation of CPCs, whereas miR-133a overexpression protected CPCs against cell death, targeting, among others, the proapoptotic genes Bim and Bmf. miR-133a-CPCs clearly improved cardiac function in a rat myocardial infarction model by reducing fibrosis and hypertrophy and increasing vasculari…

Cardiac function curveProgrammed cell deathMyocardial InfarctionGene ExpressionCardiomegalyBiologyBiochemistryArticleMuscle hypertrophyParacrine signallingDownregulation and upregulationmiR-133a; Cardiac Progenitors Cells; Myocardial InfarctionFibrosisREGENERATIONmicroRNAGeneticsmedicineMyocyteAnimalsRNA MessengerOXIDATIVE STRESSlcsh:QH301-705.5ENGINEERED HEART-TISSUElcsh:R5-920Gene Expression ProfilingMICRORNAComputational BiologyCell BiologyMUSCLEmedicine.disease3. Good healthCell biologyRatsAPOPTOSISHYPERTROPHYMicroRNAsDIFFERENTIATIONlcsh:Biology (General)ImmunologyGROWTHRNA Interferencelcsh:Medicine (General)EMBRYONIC STEM-CELLSMyoblasts CardiacDevelopmental BiologyStem Cell Reports
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May the force be with you: Transfer of healthy mitochondria from stem cells to stroke cells

2018

Stroke is a major cause of death and disability in the United States and around the world with limited therapeutic option. Here, we discuss the critical role of mitochondria in stem cell-mediated rescue of stroke brain by highlighting the concept that deleting the mitochondria from stem cells abolishes the cells’ regenerative potency. The application of innovative approaches entailing generation of mitochondria-voided stem cells as well as pharmacological inhibition of mitochondrial function may elucidate the mechanism underlying transfer of healthy mitochondria to ischemic cells, thereby providing key insights in the pathology and treatment of stroke and other brain disorders plagued with…

Cardiorespiratory Medicine and HaematologyMitochondrionRegenerative medicineRats Sprague-Dawley0302 clinical medicineStem Cell Research - Nonembryonic - Humanenergy metabolismStrokeStem CellsBrainCerebral ischemiaMitochondriaStrokeNeurologycellular bioenergeticStem Cell Research - Nonembryonic - Non-HumanStem cellmedicine.symptomCardiology and Cardiovascular Medicine1.1 Normal biological development and functioningClinical SciencesEnergy metabolismregenerative medicineInflammation03 medical and health sciencesUnderpinning researchmedicineAnimalsHumansNeurology & NeurosurgeryAnimalbusiness.industryMechanism (biology)NeurosciencesStem Cell Researchmedicine.diseaseRatsBrain DisordersTransplantationDisease Models AnimalinflammationDisease ModelsCommentarycellular bioenergeticsSprague-DawleyNeurology (clinical)businessNeuroscience030217 neurology & neurosurgerytransplantationJournal of Cerebral Blood Flow & Metabolism
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Expression patterns of complex glycoconjugates and endogenous lectins during fetal development of the viscerocranium

1999

Summary Experimental evidence suggests that carbohydrates and their corresponding receptors (endogenous lectins) decode biological information. Therefore, the expression of complex oligosaccharides — the potential ligand part of this recognition system — during chondrogenesis and osteogenesis was determined in the viscerocranium of fetal rats by mapping the staining patterns of exogenous lectins. Results were compared with the expression of bone- and/or cartilage-specific core proteins and the binding profiles of neoglycoconjugates. These synthetic tools make possible the localization of sugar-ligand-binding sites. The spatial and temporal distribution patterns of glycoconjugates were highl…

Cartilage ArticularGlycoconjugateOligosaccharidesGestational AgeMesodermRats Sprague-DawleyEmbryonic and Fetal DevelopmentOsteogenesisPregnancyLectinsAnimalsReceptorchemistry.chemical_classificationbiologyMacrophagesGriffonia simplicifoliaSkullLectinGeneral MedicineOligosaccharidebiology.organism_classificationChondrogenesisLigand (biochemistry)RatsBiochemistrychemistryViscerocraniumbiology.proteinFemalePlant LectinsAnatomyGlycoconjugatesDevelopmental BiologyAnnals of Anatomy - Anatomischer Anzeiger
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Expression of M-cadherin protein in myogenic cells during prenatal mouse development and differentiation of embryonic stem cells in culture.

1994

Molecules regulating morphogenesis by cell-cell interactions are the cadherins, a class of calcium-dependent adhesion molecules. One of its members, M-cadherin, has been isolated from a myoblast cell line (Donalies et al. [1991] Proc. Natl. Acad. Sci. U.S.A. 88:8024—8028). In mouse development, expression of M-cadherin mRNA first appears at day 8.5 of gestation (E8.5) in somites and has been postulated to be down-regulated in developing muscle masses (Moore and Walsh [1993] Development 117:1409—1420). Affinity-purified polyclonal M-cadherin antibodies, detecting a protein of approximately 120 kDa, were used to study the cell expression pattern of M-cadherin protein. It was first visualized …

Cell Adhesion Molecules NeuronalRecombinant Fusion ProteinsMolecular Sequence DataMorphogenesisFluorescent Antibody TechniqueGestational AgeBiologyEmbryonic and Fetal DevelopmentMiceLamininPregnancyMyocyteAnimalsAmino Acid SequenceRNA MessengerMuscle SkeletalCells CulturedDNA PrimersMice Inbred BALB CBase SequenceCadherinCell adhesion moleculeStem CellsCell MembraneGene Expression Regulation DevelopmentalCadherinsEmbryonic stem cellMolecular biologyCell culturebiology.proteinDesminFemaleDevelopmental BiologyDevelopmental dynamics : an official publication of the American Association of Anatomists
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An affordable method to obtain cultured endothelial cells from peripheral blood

2013

The culture of endothelial progenitor cells (EPC) provides an excellent tool to research on EPC biology and vascular regeneration and vasculogenesis. The use of different protocols to obtain EPC cultures makes it difficult to obtain comparable results in different groups. This work offers a systematic comparison of the main variables of most commonly used protocols for EPC isolation, culture and functional evaluation. Peripheral blood samples from healthy individuals were recovered and mononuclear cells were cultured. Different recovery and culture conditions were tested: blood volume, blood anticoagulant, coating matrix and percentage of foetal bovine serum (FBS) in culture media. The succ…

Cell Culture TechniquesNeovascularization PhysiologicSangBlood volumeCell SeparationPeripheral blood mononuclear cellUmbilical veinvasculogenesisAndrologyVasculogenesisCell AdhesionHuman Umbilical Vein Endothelial CellsmedicineHumansProgenitor cellCells CulturedCell Proliferationendothelial progenitor cellsFisiologia cel·lularcell cultureBlood CellsbiologyStem CellsReproducibility of ResultsOriginal ArticlesCell BiologyHeparinFibronectinCell cultureImmunologyembryonic structuresbiology.proteincardiovascular systemMolecular Medicinemedicine.drugcirculatory and respiratory physiology
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The Embryonic Central Nervous System Lineages ofDrosophila melanogaster

1996

In Drosophila, central nervous system (CNS) formation starts with the delamination from the neuroectoderm of about 30 neuroblasts (NBs) per hemisegment. They give rise to approximately 350 neurons and 30 glial cells during embryonic development. Understanding the mechanisms leading to cell fate specification and differentiation in the CNS requires the identification of the NB lineages. The embryonic lineages derived from 17 NBs of the ventral part of the neuroectoderm have previously been described (Bossing et al., 1996). Here we present 13 lineages derived from the dorsal part of the neuroectoderm and we assign 12 of them to identified NBs. Together, the 13 lineages comprise approximately …

Cell divisionNeuroectodermLineage (evolution)food and beveragesAnatomyCell BiologyBiologyCell fate determinationEmbryonic stem cellCell biologynervous systemNeuroblastVentral nerve cordembryonic structuresGanglion mother cellMolecular BiologyDevelopmental BiologyDevelopmental Biology
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Proliferative activity and tumorigenic conversion: impact on cellular metabolism in 3-D culture

2001

Oxygen consumption, glucose, lactate, and ATP concentrations, as well as glucose and lactate turnover rates, have been studied in a three-dimensional carcinogenesis model of differently transformed rat embryo fibroblasts (spontaneously immortalized Rat1 and myc-transfected M1, and the ras-transfected, tumorigenic descendants Rat1-T1 and MR1) to determine metabolic alterations that accompany tumorigenic conversion. Various bioluminescence techniques, thymidine labeling, measurement of[Formula: see text] distributions with microelectrodes, and determination of cellular oxygen uptake rates (Q˙[Formula: see text]) have been applied. In the ras-transfected, tumorigenic spheroid types, the size d…

Cell divisionPhysiologyBiologymedicine.disease_causeDiffusionchemistry.chemical_compoundAdenosine TriphosphateOxygen ConsumptionSpheroids CellularmedicineAnimalsLactic AcidFibroblastCell Line TransformedCell growthCell BiologyTransfectionFibroblastsEmbryo MammalianRats Inbred F344In vitroRatsLactic acidOxygenCell Transformation NeoplasticGlucosemedicine.anatomical_structurechemistryBiochemistryembryonic structuresCarcinogenesisAdenosine triphosphateCell DivisionAmerican Journal of Physiology-Cell Physiology
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ANP (Atrial Natriuretic Peptide) presence in the heart of a tunicate, Ciona intestinalis.

2010

Atrial natriuretic peptide was found in the heart of vertebrates, we studied the ANP presence in the heart of Ciona intestinalis. This is animal is very important because of the its evolutionary position between invertebrates and vertebrates. ANP presence was only revealed in myoepithelial cells of the myocardium. Results suggest the hypothesis that ANP is present not only in the vertebrates but also in the invertebrates and in Ciona heart ANP might play a similar role like in the heart of vertebrates.

Cell physiologymedicine.medical_specialtyHistologyPathology and Forensic MedicineAtrial natriuretic peptideInternal medicinebiology.animalANP heart tunicates Ciona intestinalismedicineAnimalsCiona intestinalislcsh:QH573-671ANP - Atrial natriuretic peptidebiologylcsh:CytologyMyocardiumMyoepithelial cellVertebrateGeneral Medicinebiology.organism_classificationCiona intestinalisTunicateCionaEndocrinologyembryonic structurescardiovascular systemAtrial Natriuretic Factorhormones hormone substitutes and hormone antagonistscirculatory and respiratory physiologyFolia Histochemica et Cytobiologica
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Quantitative characterization of tetraspanin 8 homointeractions in the plasma membrane

2021

The spatial distribution of proteins in cell membranes is crucial for signal transduction, cell communication and membrane trafficking. Members of the Tetraspanin family organize functional protein clusters within the plasma membrane into so-called Tetraspanin-enriched microdomains (TEMs). Direct interactions between Tetraspanins are believed to be important for this organization. However, studies thus far have utilized mainly co-immunoprecipitation methods that cannot distinguish between direct and indirect, through common partners, interactions. Here we study Tetraspanin 8 homointeractions in living cells via quantitative fluorescence microscopy. We demonstrate that Tetraspanin 8 exists i…

Cell signalingTetraspaninsLipoylationDimerTransfectionBiochemistryArticleProtein–protein interactionchemistry.chemical_compoundMembrane MicrodomainsTetraspaninFluorescence Resonance Energy TransferHumansMolecular BiologyChemistryCell BiologyDissociation constantHEK293 CellsMembraneMicroscopy FluorescenceMembrane proteinembryonic structuresBiophysicsThermodynamicsProtein MultimerizationSignal transductionSignal TransductionBiochemical Journal
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TGF-β superfamily signaling is essential for tooth and hair morphogenesis and differentiation

2007

Members of the transforming growth factor beta (TGF-beta) superfamily of signaling molecules are involved in the regulation of many developmental processes that involve the interaction between mesenchymal and epithelial tissues. Smad7 is a potent inhibitor of many members of the TGF-beta family, notably TGF-beta and activin. In this study, we show that embryonic overexpression of Smad7 in stratified epithelia using a keratin 5 promoter, results in severe morphogenetic defects in skin and teeth and leads to embryonic and perinatal lethality. To further analyze the functions of Smad7 in epithelial tissues of adult mice, we used an expression system that allowed a controlled overexpression of …

Cell signalingmedicine.medical_specialtyHistologyMorphogenesisEmbryonic DevelopmentMice TransgenicNerve Tissue ProteinsBiologySmad7 ProteinPathology and Forensic MedicineNestinMice03 medical and health sciences0302 clinical medicineIntermediate Filament ProteinsGenes ReporterTransforming Growth Factor betaInternal medicineMorphogenesismedicineAnimalsHumansTransgenes030304 developmental biology0303 health sciencesR-SMADIntegrasesintegumentary systemTooth Abnormalities[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyCell DifferentiationCell BiologyGeneral MedicineHair follicleSurvival AnalysisCell biologyKeratin 5Endocrinologymedicine.anatomical_structureGene Expression RegulationLac OperonTransforming growth factor beta 3030220 oncology & carcinogenesisRabbitsAmeloblastToothHairSignal TransductionTransforming growth factorEuropean Journal of Cell Biology
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