Search results for "Cell junction"

showing 4 items of 14 documents

Ultrastructural changes of the intercellular relationship in impaired human spermatogenesis

1980

In seven hypo- or aspermic patients, electron microscopic investigations of the intercellular connections of the seminiferous tubule were performed. The analysis of cell junctions of Sertoli cells and germ cells revealed irregularities of the Sertoli-cell junctions, hypoplasias of occluding junctions, hypo- and hyperplasias of the Sertoli-spermatid cell junctions and abnormal formation of Sertoli cell junctions with early spermatids, spermatocytes, and spermatogonia. Gap junction-like cell membrane specializations were very rare. Intercellular cytoplasmic bridges of germ cells were always present together with these cells. One hypoplastic bridge connecting two spermatogonia was found. The r…

Maleendocrine systemBiologyCell junctionCell membraneGeneticsmedicineHumansSpermatogenesisCytoskeletonInfertility MaleGenetics (clinical)Blood–testis barrierSertoli CellsTight junctionurogenital systemDesmosomesSeminiferous TubulesSertoli cellSpermatidsSpermatozoaCell biologyMicroscopy ElectronIntercellular Junctionsmedicine.anatomical_structureSeminiferous tubuleSpermatogenesisGerm cellHuman Genetics
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Expression of Cx36 in mammalian neurons

2000

Cx36 is the first mammalian member of a novel subgroup of the connexin family, characterized by a long cytoplasmic loop, a peculiar gene structure and a preferential expression in cell types of neural origin. In the present review we summarize the evidence in favour of its predominant expression in neuronal cells in the mammalian central nervous system, such as results from experiments with specific neurotoxins and co-localization of Cx36 mRNA and a neuronal marker. We also report a detailed description of Cx36 mRNA distribution in the rat and human central nervous system by in situ hybridization and, for each brain region, we correlate the novel findings with previous morphological or func…

MammalsMessenger RNAGeneral NeuroscienceCentral nervous systemGap JunctionsGene ExpressionConnexinCell CommunicationMolecular neuroscienceIn situ hybridizationBiologyCell junctionConnexinsmedicine.anatomical_structureSynapsesGene expressionmedicineAnimalsHumanssense organsNeurology (clinical)NeuronEye ProteinsNeuroscienceBrain Research Reviews
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Lung epithelial cell lines in coculture with human pulmonary microvascular endothelial cells: development of an alveolo-capillary barrier in vitro.

2004

We have established a coculture system of human distal lung epithelial cells and human microvascular endothelial cells in order to study the cellular interactions of epithelium and endothelium at the alveolocapillary barrier in both pathogenesis and recovery from acute lung injury. The aim was to determine conditions for the development of functional cellular junctions and the formation of a tight epithelial barrier similar to that observed in vivo. The in vitro coculture system consisted of monolayers of human lung epithelial cell lines (A549 or NCI H441) and primary human pulmonary microvascular endothelial cells (HPMEC) on opposite sides of a permeable filter membrane. A549 failed to sho…

Pathologymedicine.medical_specialtyEndotheliummedicine.medical_treatmentBiologyLung injuryCell junctionDexamethasonePathology and Forensic MedicineCell LineTight JunctionsAdherens junctionmedicineElectric ImpedanceHumansMolecular BiologyLungLungBlood-Air BarrierTumor Necrosis Factor-alphaEpithelial CellsCell BiologyAdherens JunctionsEpitheliumCoculture TechniquesCell biologyEndothelial stem cellPulmonary AlveoliMicroscopy Electronmedicine.anatomical_structureCytokineEndothelium VascularInflammation MediatorsLaboratory investigation; a journal of technical methods and pathology
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Response of micro- and macrovascular endothelial cells to starch-based fiber meshes for bone tissue engineering.

2006

The establishment of a functional vasculature is as yet an unrealized milestone in bone reconstruction therapy. For this study, fiber-mesh scaffolds obtained from a blend of starch and poly(caprolactone) (SPCL), that have previously been shown to be an excellent material for the proliferation and differentiation of bone marrow cells and thereby represent great potential as constructs for bone regeneration, were examined for endothelial cell (EC) compatibility. To be successfully applied in vivo, this tissue engineered construct should also be able to support the growth of ECs in order to facilitate vascularization and therefore assure the viability of the construct upon implantation. The ma…

ScaffoldMaterials scienceCellular differentiationEndothelial cellsBiophysicsNeovascularization PhysiologicBioengineering02 engineering and technologyComplex MixturesStarch-based scaffoldsCell junctionBone and BonesBone tissue engineeringBiomaterials03 medical and health sciencesmedicineBone regenerationCells Cultured030304 developmental biology0303 health sciencesScience & TechnologyTissue EngineeringCell adhesion moleculeVascularizationCell DifferentiationStarch021001 nanoscience & nanotechnologyCell biologyEndothelial stem cellmedicine.anatomical_structureMechanics of MaterialsCell cultureCeramics and CompositesBone marrowEndothelium Vascular0210 nano-technologyBiomedical engineeringBiomaterials
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