Search results for "intermediate filament"

showing 10 items of 103 documents

The expression level of the orphan nuclear receptor GCNF (germ cell nuclear factor) is critical for neuronal differentiation.

2004

The germ cell nuclear factor (GCNF) is essential for normal embryonic development and gametogenesis. To test the prediction that GCNF is additionally required for neuronal differentiation, we used the mouse embryonal carcinoma cell line PCC7-Mz1, which represents an advantageous model to study neuronal cells from the stage of fate choice until the acquirement of functional competence. We generated stable transfectants that express gcnf sense or antisense RNA under the control of a tetracycline-regulated promoter. After retinoic acid-induced withdrawal from the cell cycle, sense clones developed a neuron network with changed properties, and the time course of neuron maturation was shortened.…

Patch-Clamp TechniquesGerm cell nuclear factorSynaptophysinDown-RegulationGene ExpressionReceptors Cytoplasmic and NuclearNerve Tissue ProteinsTretinoinBiologyNestinMiceEndocrinologyGAP-43 ProteinIntermediate Filament ProteinsNuclear Receptor Subfamily 6 Group A Member 1AnimalsRNA AntisenseMolecular BiologyNeuronsCell CycleCell PolarityCell DifferentiationGeneral MedicineCell cycleNestinCell biologyUp-RegulationNeuroepithelial cellDNA-Binding Proteinsnervous systemNeuron maturationSynaptophysinbiology.proteinNeuron differentiationStem cellMicrotubule-Associated ProteinsMolecular endocrinology (Baltimore, Md.)
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Intermediate-filament expression in ocular tissue.

2002

Intermediate-filament proteins (IFPs) occur in the intracellular cytoskeleton of eukaryotic cells, and their expression in diverse tissues is related both to embryology as well as to differentiation. Although the available information concerning their functional properties in vivo is still incomplete, antibodies against individual IFPs are commonly used in immunohistochemical procedures as markers for differentiation, and these antibodies are of outstanding value in the routine histopathological evaluation of tumor specimens. This review presents a compilation of the currently available data concerning IFP expression in normal and diseased ocular tissues. Representatives of every known clas…

Pathologymedicine.medical_specialtyCell typebiologyEye DiseasesMesenchymal stem cellVimentinEyeSensory SystemsPathogenesisOphthalmologyCytokeratinmedicine.anatomical_structureIntermediate Filament ProteinsReference Valuesmedicinebiology.proteinImmunohistochemistryAnimalsHumansTissue DistributionIntermediate filamentCorneal epitheliumProgress in retinal and eye research
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The Adult Macaque Spinal Cord Central Canal Zone Contains Proliferative Cells And Closely Resembles The Human

2014

The persistence of proliferative cells, which could correspond to progenitor populations or potential cells of origin for tumors, has been extensively studied in the adult mammalian forebrain, including human and nonhuman primates. Proliferating cells have been found along the entire ventricular system, including around the central canal, of rodents, but little is known about the primate spinal cord. Here we describe the central canal cellular composition of the Old World primate Macaca fascicularis via scanning and transmission electron microscopy and immunohistochemistry and identify central canal proliferating cells with Ki67 and newly generated cells with bromodeoxyuridine incorporation…

Pathologymedicine.medical_specialtyEpendymal CellbiologyGeneral NeuroscienceAnatomyVentricular systemSpinal cordMacaqueNeural stem cellmedicine.anatomical_structurebiology.animalForebrainmedicineIntermediate filamentEpendymaJournal of Comparative Neurology
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Early development of human Merkel cells.

1992

Human fetal Merkel cells are now generally considered to be epidermal derivatives. Previous studies using antibodies against the simple epithelial cytokeratins (CKs), 8 and 18, have demonstrated the presence of these cells in the epidermis at as early as fetal week 10 to 12. Using antibodies against CK 20 whose expression within the skin is restricted to Merkel cells, we applied immunofluorescence and immunoperoxidase microscopy to analyze earlier embryonic and fetal human skin (wk 7 to 9). We were able to demonstrate the first Merkel cells at as early as fetal wk 8, i.e., at the same time as the epidermis starts to develop an intermediate, third layer, characterized by the expression of CK…

Pathologymedicine.medical_specialtyFluorescent Antibody TechniqueHuman skinGestational AgeDermatologyKeratin-20BiologyImmunofluorescenceBiochemistryImmunoenzyme TechniquesBasal (phylogenetics)FetusIntermediate Filament ProteinsEndocrine GlandsmedicineHumansMolecular BiologyFetusintegumentary systemImmunoperoxidasemedicine.diagnostic_testAntibodies MonoclonalEmbryonic stem cellmedicine.anatomical_structureEpidermal CellsEpidermisEpidermisMerkel cellHairExperimental dermatology
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Wharton's Jelly Stem Cells: A Novel Cell Source for Oral Mucosa and Skin Epithelia Regeneration

2013

Abstract Perinatal stem cells such as human umbilical cord Wharton's jelly stem cells (HWJSCs) are excellent candidates for tissue engineering because of their proliferation and differentiation capabilities. However, their differentiation potential into epithelial cells at in vitro and in vivo levels has not yet been reported. In this work we have studied the capability of HWJSCs to differentiate in vitro and in vivo to oral mucosa and skin epithelial cells using a bioactive three-dimensional model that mimics the native epithelial-mesenchymal interaction. To achieve this, primary cell cultures of HWJSCs, oral mucosa, and skin fibroblasts were obtained in order to generate a three-dimension…

Pathologymedicine.medical_specialtyFluorescent Antibody TechniqueMice NudeFilaggrin ProteinsBiologyModels BiologicalEpitheliumMiceIntermediate Filament ProteinsTissue engineeringTissue Engineering and Regenerative MedicineWharton's jellymedicineAnimalsHumansRegenerationWharton JellyProtein PrecursorsOral mucosaInvolucrinSkinRegeneration (biology)Mouth MucosaCell DifferentiationEpithelial CellsMesenchymal Stem CellsCell BiologyGeneral MedicineFlow CytometryCell biologymedicine.anatomical_structureCell cultureKeratinsLeukocyte Common AntigensThy-1 Antigensgamma CateninStem cellDevelopmental BiologyAdult stem cellStem Cells Translational Medicine
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Intermediate filaments of normal and neoplastic tissues of the female genital tract with emphasis on problems of differential tumor diagnosis

1984

Cytokeratins of normal epithelia and of some neoplasms of the female genital tract were studied by immunofluorescence microscopy of frozen sections and by two-dimensional gel electrophoresis of cytoskeletal proteins from microdissected tissues. All normal epithelia were stained with the monoclonal cytokeratin antibody KG 8.13 whereas certain monoclonal antibodies stained only simple epithelia. As revealed by gel electrophoresis the normal epithelia of the ovarian surface, oviduct, endometrium and endocervix contained cytokeratin polypeptides Nos. 7, 8, 18 and 19. In contrast, stratified exocervical epithelium showed a much more complex pattern (polypeptides No. 1, 2, 4, 5, 6, 11, 13, 14, 15…

Pathologymedicine.medical_specialtyFrozen section procedureGenital Neoplasms Femalemedicine.drug_classFluorescent Antibody TechniqueCell BiologyBiologyEndometriumMonoclonal antibodyPathology and Forensic MedicineDiagnosis DifferentialCytokeratinmedicine.anatomical_structuremedicineGenital neoplasmHumansKeratinsImmunohistochemistryFemaleIntermediate filamentCytoskeletonEndocervixPathology - Research and Practice
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Cytokeratin 8 immunostaining pattern and E-cadherin expression distinguish lobular from ductal breast carcinoma.

2000

Immunohistochemistry using antibodies to cytokeratin 8 can serve as a valuable diagnostic tool for the differentiation of lobular from ductal carcinomas of the breast. In contrast with ductal carcinomas, which exhibit a peripheral-predominant immunostaining pattern, adjacent tumor cells “molding” to each other, lobular carcinomas exhibit a ring-like perinuclear immunostaining pattern, creating a “bag of marbles” appearance with neighboring tumor cells. This immunostaining pattern is stable even in the tumors that otherwise do not exhibit characteristic histomorphologic features (ie, solid or pleomorphic type of a lobular carcinoma) and tumors that mimic growth patterns characteristic of the…

Pathologymedicine.medical_specialtyLobular carcinomaIntermediate FilamentsBreast NeoplasmsBiologyDiagnosis DifferentialImmunoenzyme TechniquesCytokeratinBreast cancerCarcinomamedicineHumansskin and connective tissue diseasesCell NucleusCarcinoma Ductal BreastGeneral MedicineDuctal carcinomamedicine.diseaseCadherinsDuctal Breast CarcinomaCarcinoma LobularInvasive lobular carcinomaKeratin 8KeratinsFemaleAmerican journal of clinical pathology
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The disruption of myofibre structures in skeletal muscle after forced lengthening contractions

1998

Specific antibodies against structural proteins (actin, desmin, dystrophin, fibronectin) of muscle fibres were used to study the effect of forced lengthening contractions on muscle microarchitecture. Tibialis anterior (TA) muscle of male Wistar rats were subjected to 240 forced lengthening contractions. At consecutive time points (0, and 6 h, 2, 4, and 7 days) after stimulation, the TA muscle was excised for biochemical and histological assays. β-Glucuronidase activity, a quantitative indicator of muscle damage, showed increased values 2–7 days after the lengthening, peaking on day 4 (11.7-fold increase). A typical course of histopathological changes (myofibre swelling, necrosis and regener…

Pathologymedicine.medical_specialtyNecrosisSkeletal muscleAnatomyBiologyPathology and Forensic Medicinemedicine.anatomical_structurePhysiology (medical)medicinebiology.proteinDesminmedicine.symptomMyofibrilIntermediate filamentDystrophinCytoskeletonActinPathophysiology
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Neuropathologic and morphometric studies in hereditary motor and sensory neuropathy type II with neurofilament accumulation.

1986

Histological, electron microscopic and morphometric data on sural nerve, muscle, and skin biopsies of three patients affected by autosomal dominant hereditary motor and sensory neuropathy type II with neurofilament accumulation, whose neurological, cardiological and electrophysiological data have been provided in a previous paper disclosed focally enlarged myelinated axons, due to aggregation of neurofilaments in sural nerves of all 3 biopsied patients, as well as densely packed clusters of filaments in occasional non-myelinated axons without axonal enlargement, in several fibroblasts and endothelial cells in muscle and particularly in skin. This accumulation of filaments was less pronounce…

Pathologymedicine.medical_specialtyNeurofilamentNeurologyIntermediate FilamentsSural nerveDermatologyBiologylaw.invention03 medical and health sciences0302 clinical medicineSural NervelawCharcot-Marie-Tooth DiseasemedicineHumansHereditary Sensory and Autonomic NeuropathiesIntermediate filamentCytoskeletonMyelin Sheath030304 developmental biologySkinMotor Neurons0303 health sciencesGeneral NeuroscienceMusclesGeneral MedicineAnatomymedicine.diseaseAxonsPsychiatry and Mental healthElectrophysiologyMicroscopy ElectronMuscular Atrophynervous systemUltrastructureNeurology (clinical)Electron microscopeHereditary motor and sensory neuropathy030217 neurology & neurosurgeryItalian journal of neurological sciences
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Desmin pathology in neuromuscular diseases

1993

Desmin is an intermediate filament protein that in striated muscle is normally located at Z-bands, beneath the sarcolemma, and prominently at neuromuscular junctions. It is abundant during myogenesis and in regenerating fibers, but decreases in amount with maturation; in regenerating and denervated muscle fibers it is co-expressed with vimentin. Aggregates of desmin occur as nonspecific cytoplasmic bodies or cytoplasmic spheroid complexes, similar to the aggregates of keratin filaments in Mallory bodies or the neurofilament aggregates in Lewy bodies. In all three instances, alpha-B crystallin may be associated with desmin. There are now increasing numbers of neuromuscular disorders in which…

Pathologymedicine.medical_specialtyNeurofilamentmacromolecular substancesDesminmedicineAnimalsHumansRegenerationIntermediate Filament ProteinMallory bodyMyopathyCytoskeletonSarcolemmabiologyMyogenesisChemistryMusclesNeuromuscular Diseasesmedicine.diseaseMuscle Denervationbiology.proteinDesminmedicine.symptomCardiomyopathiesDystrophinVirchows Archiv B Cell Pathology Including Molecular Pathology
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