Search results for "Ciliary neurotrophic factor"

showing 10 items of 15 documents

Humanin: A mitochondria-derived peptide with emerging properties.

2020

AgingPeptideApoptosisMitochondrionDNA MitochondrialMitochondrial Proteinschemistry.chemical_compoundMedicineHumansInsulinProtein IsoformsAmino AcidsReceptors LipoxinReceptorHumaninchemistry.chemical_classificationbusiness.industryLipoxin metabolismIntracellular Signaling Peptides and ProteinsReceptors Formyl PeptideAmino acidMitochondriachemistryBiochemistryApoptosisCardiology and Cardiovascular MedicinebusinessEnergy MetabolismDNABiomarkersCiliary Neurotrophic Factor Receptor alpha SubunitAnnales de cardiologie et d'angeiologie
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The effect of adhesives on inflammatory immune-markers during renal injury healing

2017

Renal injury is common in abdominal trauma. Adhesives and sealants can be used to repair and preserve damaged organs. We describe the effect of three biomaterial treatments (TachoSil, GelitaSpon, and Adhflex) on injured renal tissue. Renal traumatic injuries were experimentally induced in male Wistar rats (n = 90) using a punch. Animals were divided into five groups: (1) sham noninjured (n = 3) and punch injury groups; (2) nontreated (n = 6); (3) TachoSil (n = 27); (4) GelitaSpon (n = 27); and (5) Adhflex (n = 27). Wound healing was evaluated 2, 6, and 18 days postinjury by inflammatory cytokines response, histopathological evolution of lesions, inflammatory reaction markers (CD68), and vas…

CD31Chemokinemedicine.medical_specialtyMaterials sciencebiologyCD68Biomedical EngineeringAdhesion (medicine)TachoSilCiliary neurotrophic factormedicine.diseaseGastroenterologyProinflammatory cytokineBiomaterials03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisInternal medicinebiology.proteinmedicineWound healing030217 neurology & neurosurgeryJournal of Biomedical Materials Research Part B: Applied Biomaterials
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Interleukin-6 and Soluble Interleukin-6 Receptor: Direct Stimulation of gp130 and Hematopoiesis

1998

T HE INTERLEUKIN-6 (IL-6) family of cytokines acts via receptor complexes that contain at least one subunit of the signal transducing protein gp130.[1][1] The family comprises IL-6, IL-11, ciliary neurotrophic factor (CNTF), cardiotrophin-1 (CT-1), leukemia inhibitory factor (LIF), and oncostatin M

Models Molecularendocrine systemmedicine.medical_specialtyRecombinant Fusion ProteinsImmunologyMice TransgenicLeukemia inhibitory factor receptorOncostatin MBiologyCiliary neurotrophic factorBiochemistryDesigner DrugsMiceStructure-Activity RelationshipAntigens CDInternal medicineCytokine Receptor gp130medicineAnimalsHumansInterleukin 6Membrane GlycoproteinsInterleukin-6Oncostatin MOncostatin M receptorCell DifferentiationReceptors InterleukinCell BiologyHematologyHematopoietic Stem CellsGlycoprotein 130Receptors Interleukin-6Molecular biologyHematopoiesisEndocrinologyLiverSolubilitybiology.proteinSignal transductionPeptidesLeukemia inhibitory factorSpleenBlood
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Interleukin-6 (IL-6) and its soluble receptor support survival of sensory neurons

1999

The cytokine interleukin-6 (IL-6) has multiple functions in the immune and hematopoietic systems. IL-6 is related to ciliary neurotrophic factor (CNTF), a trophic factor for motoneurons, sensory dorsal root ganglion (DRG) neurons, and other neuronal subpopulations. Both act via related receptor complexes, consisting of one ligand-specific α-receptor subunit (IL-6R and CNTFR, respectively) and two signal-transducing receptor components. Even though IL-6 is expressed by neurons and glia, the functions of IL-6 in the nervous system are poorly understood. Here, we report that exogenous human IL-6 promotes the survival of dissociated newborn rat DRG neurons in vitro if supplemented with soluble …

Nervous systemCytoplasmCiliary neurotrophic factorCellular and Molecular NeuroscienceDorsal root ganglionNeurotrophic factorsGanglia SpinalNerve Growth FactormedicineAnimalsHumansCiliary Neurotrophic FactorNeurons AfferentReceptorAutocrine signallingInterleukin 6Cells CulturedCell DeathDose-Response Relationship DrugbiologyInterleukin-6Receptors Interleukin-6RatsCell biologyAutocrine Communicationmedicine.anatomical_structureAnimals Newbornnervous systembiology.proteinNeuroscienceNeurotrophinJournal of Neuroscience Research
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Nicotinic receptors and neurotrophic factors

2000

PharmacologybiologyNicotinic ReceptorsChemistryTropomyosin receptor kinase BCiliary neurotrophic factorCell biologyPsychiatry and Mental healthNeurologyNeurotrophic factorsbiology.proteinGlial cell line-derived neurotrophic factorPharmacology (medical)Neurology (clinical)Biological PsychiatryEuropean Neuropsychopharmacology
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Differential response of neuronal cells to a fusion protein of ciliary neurotrophic factor/soluble CNTF-receptor and leukemia inhibitory factor

2002

Ciliary neurotrophic factor (CNTF) displays neurotrophic activities on motor neurons and neural cell populations both in vivo and in vitro. On target cells lacking intrinsic expression of specific receptor alpha subunits cytokines of the IL-6 family only act in the presence of their specific agonistic soluble receptors. Here, we report the construction and expression of a CNTF/soluble CNTF-receptor (sCNTF-R) fusion protein (Hyper-CNTF) with enhanced biological activity on cells expressing gp130 and leukemia inhibitory factor receptor (LIF-R), but not membrane-bound CNTF-R. At the cDNA level, the C-terminus of the extracellular domain of human CNTF-R (amino acids 1-346) was linked via a sing…

Receptor complexCellular differentiationbiology.proteinLeukemia inhibitory factor receptorLeukemia Inhibitory Factor Receptor alpha SubunitBiologySignal transductionCiliary neurotrophic factorGlycoprotein 130BiochemistryMolecular biologyLeukemia inhibitory factorCell biologyEuropean Journal of Biochemistry
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A New Type of Cytokine Receptor Antagonist Directly Targeting gp130

1998

The interleukin-6-type family of cytokines bind to receptor complexes that share gp130 as a common signal-transducing subunit. So far, receptor antagonists for interleukin-6-type cytokines have been constructed that still bind to the specific ligand binding subunit of the receptor complex, but have lost the ability to stimulate gp130. Such receptor antagonists compete for a specific receptor of a member of the cytokine family. Interleukin-6 only binds to gp130 when complexed with the interleukin-6 receptor that exists as a membrane bound and soluble molecule. Here we have constructed fusion proteins that consist of the soluble form of the human interleukin-6 receptor covalently linked to in…

Receptor complexRecombinant Fusion ProteinsNerve Tissue ProteinsOncostatin MBiologyLeukemia Inhibitory FactorBiochemistryAntigens CDCytokine Receptor gp130Enzyme-linked receptorHumansPoint Mutation5-HT5A receptorCiliary Neurotrophic FactorMolecular BiologyProtease-activated receptor 2Common gamma chainLymphokinesMembrane GlycoproteinsDose-Response Relationship DrugJanus kinase 1Interleukin-6digestive oral and skin physiologyCell BiologyReceptors Interleukin-6Growth Inhibitorsbiological factorsBiochemistryInterleukin-21 receptorCytokinesPeptidesCytokine receptorProtein BindingJournal of Biological Chemistry
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The thymus at the crossroad of neuroimmune interactions.

2006

The numerous relationships existing between the nervous and the immune systems suggest that the neural networks present in the intrathymic microenvironment may influence T-cell development. We previously reported that thymic neural-crest-derived stromal cells are involved in a neural differentiation pathway and are able to produce neurotrophic factors and neurokines that are in turn able to increase and/or modulate thymic-stromal cell neuronal phenotype. We also showed that EGF promotes a neural phenotype in thymic epithelial cells by enhancing the expression of neuronal-specific markers, neurotransmitters, and neuropoietic cytokines, such as IL-6 and CNTF. More recently we showed that the …

Stromal cellbiologyNeuroimmunomodulationGeneral NeuroscienceT-LymphocytesThymus GlandCiliary neurotrophic factorCell fate determinationPhenotypeGeneral Biochemistry Genetics and Molecular BiologyCell biologyThymocyteImmune systemHistory and Philosophy of ScienceNeurotrophic factorsImmunologybiology.proteinAnimalsHumansNeurotrophinAnnals of the New York Academy of Sciences
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Sympathetic neurons can produce and respond to interleukin 6

1998

Neuronal expression of cytokines is an area of active investigation in the contexts of development, disease, and normal neural function. Although cultured rat sympathetic neurons respond very weakly to exogenous interleukin 6 (IL-6), we find that addition of soluble IL-6 receptor (sIL-6R) and IL-6 enhances neuronal survival in the absence of nerve growth factor. Neutralizing monoclonal antibodies against IL-6 block these effects. Addition of IL-6 and sIL-6R also induces a subset of neuropeptide and transmitter synthetic enzyme mRNAs identical to that demonstrated for leukemia inhibitory factor, ciliary neurotrophic factor, and oncostatin M. Both of these effects are duplicated by addition o…

Superior cervical ganglionmedicine.medical_specialtyCell SurvivalRecombinant Fusion ProteinsSuperior Cervical GanglionCiliary neurotrophic factorPC12 CellsRats Sprague-DawleyMiceParacrine signallingContactinsInternal medicinemedicineAnimalsNerve Growth FactorsRNA MessengerInterleukin 6Autocrine signallingNeural Cell Adhesion MoleculesCells CulturedNeuronsMultidisciplinarybiologyInterleukin-6Neuropeptides3T3 CellsBiological SciencesReceptors Interleukin-6RatsCell biologyAutocrine CommunicationNerve growth factorEndocrinologyAnimals Newbornbiology.proteinNeural cell adhesion moleculeLeukemia inhibitory factorCaltech Library ServicesProceedings of the National Academy of Sciences
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Activation of TRK Genes in Ewingʼs Sarcoma Trk A Receptor Expression Linked to Neural Differentiation

1997

Trk receptors have been identified by immunohistochemical methods in primitive neuroectodermal tumor (PNET)/Ewing's sarcoma (ES). However, the presence of different members of the Trk family of receptors in PNET/ES has not been specified. We have examined whether Trk A, B, and C receptors are specifically expressed in ES both with and without features of neural differentiation. Ten ES tumors (five primary tumors of bone and five extraosseous tumors transplanted into nude mice) were investigated for expression of Trk receptors by immunohistochemistry and reverse transcription-polymerase chain reaction. One primary ES and the five grafted ES tumors exhibited signs of neural differentiation; t…

animal structuresReceptor expressionReceptors Nerve Growth FactorSarcoma EwingBiologyPathology and Forensic MedicineMiceProto-Oncogene ProteinsmedicineAnimalsNeuroectodermal Tumors PrimitiveReceptor trkCReceptor trkAReceptorReceptor Ciliary Neurotrophic FactorMolecular BiologyNeuronsMembrane ProteinsReceptor Protein-Tyrosine KinasesEwing's sarcomaCell DifferentiationCell BiologyProtein-Tyrosine Kinasesmedicine.diseaseMolecular biologyGene Expression Regulation Neoplasticenzymes and coenzymes (carbohydrates)nervous systemTrk receptorPrimitive neuroectodermal tumorembryonic structuresImmunohistochemistrySarcomaImmunostainingDiagnostic Molecular Pathology
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