Search results for "Hair Cells"

showing 10 items of 30 documents

Evaluation of Planar-Cell-Polarity Phenotypes in Ciliopathy Mouse Mutant Cochlea

2016

In recent years, primary cilia have emerged as key regulators in development and disease by influencing numerous signaling pathways. One of the earliest signaling pathways shown to be associated with ciliary function was the non-canonical Wnt signaling pathway, also referred to as planar cell polarity (PCP) signaling. One of the best places in which to study the effects of planar cell polarity (PCP) signaling during vertebrate development is the mammalian cochlea. PCP signaling disruption in the mouse cochlea disrupts cochlear outgrowth, cellular patterning and hair cell orientation, all of which are affected by cilia dysfunction. The goal of this protocol is to describe the analysis of PCP…

0301 basic medicineCell signalingGeneral Chemical EngineeringStereocilia (inner ear)Cochlear ductBiologyGeneral Biochemistry Genetics and Molecular BiologyStereociliaMice03 medical and health sciencesHair Cells AuditorymedicineAnimalsCochleaGeneral Immunology and MicrobiologyGeneral NeuroscienceCiliumWnt signaling pathwayCell PolarityCochlear DuctEmbryo Mammalianmedicine.diseaseImmunohistochemistryCiliopathiesCochleaCell biologyDisease Models AnimalCiliopathyPhenotype030104 developmental biologymedicine.anatomical_structureMicroscopy Electron ScanningMedicinesense organsHair cellSignal TransductionJournal of Visualized Experiments
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DPOAE‐Grams in Patients with Acute Tonal Tinnitus

2005

To investigate cochlear outer hair cell function in patients with acute tonal tinnitus and normal or near-normal hearing threshold.Prospective controlled study in an academic tertiary health center. Distortion products of otoacoustic emissions (DPOAE)-grams of 32 ears with acute tonal tinnitus and normal hearing or minimal hearing loss were compared with those of 17 healthy nontinnitus ears.Tinnitus ears exhibited relatively increased amplitudes of DPOAE at high frequencies (4-6.3 kHz) when compared with the group of healthy ears and relatively decreased DPOAE amplitudes at middle frequencies (1650-2400 Hz). Statistically significant ( P0.01) increased mean values of DPOAE amplitudes were o…

AdultMalemedicine.medical_specialtySound SpectrographyAdolescentHearing lossHearing Loss SensorineuralLoudness PerceptionOtoacoustic Emissions SpontaneousAudiologyFunctional LateralityTinnitus03 medical and health sciences0302 clinical medicineReference Valuesotorhinolaryngologic diseasesmedicineHumansIn patientProspective StudiesPitch Perception030223 otorhinolaryngologyOuter hair cellsCochleaAgedAbsolute threshold of hearingbusiness.industryAuditory ThresholdMiddle AgedHair Cells Auditory Outermedicine.anatomical_structureAcoustic StimulationOtorhinolaryngology030220 oncology & carcinogenesisReference valuesAcute DiseaseFemaleSurgerysense organsHair cellmedicine.symptombusinessTinnitusOtolaryngology–Head and Neck Surgery
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Effects of contralateral white noise stimulation on transitory evoked otoacoustic emissions in patients with acoustic neuroma.

1995

Abstract Transitory evoked otoacoustic emissions are normal phenomena observed in most persons with hearing levels greater than 35 dB. Further, masking of the contralateral ear produces amplitude reductions in the transitory evoked otoacoustic emissions. We have undertaken a study of transitory evoked otoacoustic emissions in 20 patients with acoustic neuroma. All patients were assessed for transitory evoked otoacoustic emissions bilaterally, with and without contralateral masking with white band noise at 40, 50, and 60 dB. We found that transitory evoked otoacoustic emissions were present in 30% of ears with tumor and that the presence of transitory evoked otoacoustic emissions is associat…

Adultmedicine.medical_specialtyHearing Loss SensorineuralAcoustic neuromaStimulationAmplitude reductionAudiologyVestibular NerveNeurons EfferentHearingotorhinolaryngologic diseasesMedicineHumansIn patientProspective StudiesAgedTumor sizebusiness.industryHead neckAuditory ThresholdNeuroma AcousticMiddle Agedmedicine.diseaseCochleaHair Cells Auditory OuterWhite bandOtorhinolaryngologyAcoustic StimulationEvoked Potentials AuditoryContralateral earSurgerysense organsbusinessNoisePetrous BoneOtolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery
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Progress in electron microscopic diagnostics: semi-quantitative determination of precipitable calcium in different cell types of the organ of Corti i…

1991

Potassium antimonate was used to precipitate calcium in the cochlea of the guinea-pig. The distribution of the calcium antimonate precipitates was analysed by electron microscopy. The precipitate density was determined in different cell types in the organ of Corti by counting the number of calcium binding sites in a 10-micron 2 area. The size of the precipitates varied considerably, and thus the relative amount of the precipitable calcium was estimated only semi-quantitatively. As the prominent carbon signal is superimposed over the nearby small Ca(2+)-edge signals, the combined signal of the antimony M4,5-edge and the oxygen K-edge of the calcium antimonate salt formed was chosen for the s…

AntimonyCytoplasmHistologyGuinea PigsAnalytical chemistrychemistry.chemical_elementCalciumPathology and Forensic Medicinelaw.inventionAntimonylawHair Cells AuditoryMicroscopyImage Processing Computer-AssistedmedicineAnimalsChemical PrecipitationOrgan of CortiCochleaOrganellesPrecipitation (chemistry)Spectrum AnalysisMitochondriaMicroscopy Electronmedicine.anatomical_structurechemistryOrgan of CortiCytoplasmCalciumElectron microscopeJournal of Microscopy
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Electron microscopic localization of nitric oxide I synthase in the organ of Corti of the guinea pig

1997

Nitric oxide synthase (NOS) activity has been detected previously in the mammalian cochlea at a light microscopic level. Here we present results of electron microscopic analysis for post-embedding immunoreactivity of neural-type NOS I in the cochlea of the guinea pig. Strong enzyme immunoreactivity was identified in the cytoplasm of inner and outer hair cells. Gold-labeled NOS I antibodies were mainly located in electron-dense areas of the cytoplasm, whereas electron-lucent regions of the receptor cells were nearly free from any immunoreactivity. In both types of hair cells anti-NOS I antibodies were also visible in the cuticular plates, hair bundles and nuclei. Further ultrastructural anal…

Cell typeGuinea PigsBiologyPitch DiscriminationReference ValuesHair Cells AuditorymedicineAnimalsInner earOrgan of CortiCochleaLamina reticularisGeneral MedicineImmunohistochemistryCell biologyIsoenzymesMicroscopy Electronmedicine.anatomical_structureOtorhinolaryngologyBiochemistryCytoplasmOrgan of CortiUltrastructuresense organsHair cellNitric Oxide SynthaseSignal TransductionEuropean Archives of Oto-Rhino-Laryngology
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Cadherin 23 is a component of the transient lateral links in the developing hair bundles of cochlear sensory cells

2005

AbstractCadherin 23 is required for normal development of the sensory hair bundle, and recent evidence suggests it is a component of the tip links, filamentous structures thought to gate the hair cells' mechano-electrical transducer channels. Antibodies against unique peptide epitopes were used to study the properties of cadherin 23 and its spatio-temporal expression patterns in developing cochlear hair cells. In the rat, intra- and extracellular domain epitopes are readily detected in the developing hair bundle between E18 and P5, and become progressively restricted to the distal tip of the hair bundle. From P13 onwards, these epitopes are no longer detected in hair bundles, but immunoreac…

CytoplasmTime FactorsStereocilia (inner ear)EpitopesMice0302 clinical medicineCDH23Inner earMicroscopy ImmunoelectronEgtazic AcidCells Cultured0303 health sciencesintegumentary systemReverse Transcriptase Polymerase Chain ReactionGene Expression Regulation DevelopmentalAnatomyCadherinsHair bundleImmunohistochemistryCochleaCell biologymedicine.anatomical_structureEctodomainHair cellHair cellTransduction (physiology)Signal TransductionMechano-electrical transductionDevelopmentBiologyStereocilia03 medical and health sciencesLanthanumCadherin 23Hair Cells Auditoryotorhinolaryngologic diseasesmedicineAnimalsMolecular BiologyTip link030304 developmental biologyModels GeneticCadherinSubtilisinCell BiologyProtein Structure TertiaryRatsMicroscopy ElectronMicroscopy FluorescenceEar InnerIndicators and Reagentssense organsTip linkLateral linksUsher type 1 syndrome030217 neurology & neurosurgeryPCDH15Developmental BiologyDevelopmental Biology
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Myosin VIIa, harmonin and cadherin 23, three Usher I gene products that cooperate to shape the sensory hair cell bundle

2002

Deaf-blindness in three distinct genetic forms of Usher type I syndrome (USH1) is caused by defects in myosin VIIa, harmonin and cadherin 23. Despite being critical for hearing, the functions of these proteins in the inner ear remain elusive. Here we show that harmonin, a PDZ domain-containing protein, and cadherin 23 are both present in the growing stereocilia and that they bind to each other. Moreover, we demonstrate that harmonin b is an F-actin-bundling protein, which is thus likely to anchor cadherin 23 to the stereocilia microfilaments, thereby identifying a novel anchorage mode of the cadherins to the actin cytoskeleton. Moreover, harmonin b interacts directly with myosin VIIa, and i…

DNA ComplementaryCadherin Related ProteinsCell Cycle Proteinsmacromolecular substancesMyosinsBiologyTransfectionMicrofilamentGeneral Biochemistry Genetics and Molecular BiologyCell LineMiceCDH23Two-Hybrid System TechniquesHair Cells Auditoryotorhinolaryngologic diseasesmedicineAnimalsHumansProtein IsoformsRats WistarMolecular BiologyActinAdaptor Proteins Signal TransducingGene LibraryGeneral Immunology and MicrobiologyCadherinGeneral NeuroscienceStereociliaDyneinsCell DifferentiationArticlesCadherinsActin cytoskeletonActinsProtein Structure TertiaryRatsCell biologyCytoskeletal ProteinsMicroscopy Electronmedicine.anatomical_structureMicroscopy FluorescenceMyosin VIIasense organsCarrier ProteinsTip linkPCDH15HeLa CellsProtein BindingThe EMBO Journal
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Localization of the two constitutively expressed nitric oxide synthase isoforms (nNOS and eNOS) in the same cell types in the saccule maculae of the …

2003

There is growing evidence for a nitric oxide/cyclic GMP pathway of signal transduction in the vestibular system. Recently, two isoforms of nitric oxide (NO) synthase (nNOS and eNOS) and NO itself have been identified at the light microscopic level in the vestibulocochlear system of mice using specific antibodies and a new fluorescence indicator. In order to acquire more information about signal transduction and tissue modulation in this neuroepithelium at the cellular and subcellular levels, ultrathin sections of London Resin White-embedded saccule maculae of the frog Rana pipiens were incubated with various concentrations of commercially available antibodies to nNOS and eNOS. The immunorea…

Gene isoformCell typemedicine.medical_specialtyNitric Oxide Synthase Type IIIImmunoelectron microscopyImmunocytochemistryNitric Oxide Synthase Type IBiologyInternal medicineAcoustic MaculaeHair Cells AuditorymedicineAnimalsMicroscopy ImmunoelectronOrgan of CortiInstrumentationRana pipiensSubcellular localizationImmunohistochemistryCell biologyIsoenzymesNitric oxide synthaseNeuroepithelial cellEndocrinologyCytoplasmbiology.proteinNitric Oxide SynthaseJournal of Electron Microscopy
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Evidence for a possible NOS back-up system in the organ of Corti of the guinea pig

2003

Recently, the two Ca(2+)/calmodulin-regulated nitric oxide synthase isoforms, nNOS and eNOS, and NO itself have been identified in the cochlea of vertebrates using specific antibodies and a new fluorescence indicator. In order to acquire more information about the quantitative and spatial distribution of these two constitutively expressed NOS isoforms (cNOS) in the organ of Corti at the cellular and subcelluar levels, ultrathin sections of London resin (LR) White-embedded cochleae of the guinea pig were incubated with various concentrations of commercially available antibodies to nNOS and eNOS. The immunoreactivity was visualized by a gold-labeled secondary antibody and the amount of the im…

Gene isoformPathologymedicine.medical_specialtyCell typeGuinea PigsImmunocytochemistryGeneral MedicineBiologyImmunohistochemistryPrimary and secondary antibodiesCell biologyIsoenzymesmedicine.anatomical_structureOtorhinolaryngologyOrgan of CortiCytoplasmHair Cells Auditorymedicinebiology.proteinAnimalsInner earNitric Oxide SynthaseMicroscopy ImmunoelectronOrgan of CortiCochleaEuropean Archives of Oto-Rhino-Laryngology
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Usher syndrome: molecular links of pathogenesis, proteins and pathways.

2006

Contains fulltext : 50437.pdf (Publisher’s version ) (Closed access) Usher syndrome is the most common form of deaf-blindness. The syndrome is both clinically and genetically heterogeneous, and to date, eight causative genes have been identified. The proteins encoded by these genes are part of a dynamic protein complex that is present in hair cells of the inner ear and in photoreceptor cells of the retina. The localization of the Usher proteins and the phenotype in animal models indicate that the Usher protein complex is essential in the morphogenesis of the stereocilia bundle in hair cells and in the calycal processes of photoreceptor cells. In addition, the Usher proteins are important in…

Genetics and epigenetic pathways of disease [NCMLS 6]Usher syndromeCell Cycle ProteinsNerve Tissue ProteinsBiologyRetinaAdherens junctionMiceHair Cells AuditoryCell polarityGeneticsmedicineotorhinolaryngologic diseasesNeurosensory disorders [UMCN 3.3]AnimalsHumansProtein IsoformsCell Cycle ProteinMolecular BiologyGenetics (clinical)Renal disorder [IGMD 9]Adaptor Proteins Signal TransducingStereociliumMembrane ProteinsSignal transducing adaptor proteinGeneral MedicineActin cytoskeletonmedicine.diseaseeye diseasesCell biologyCytoskeletal ProteinsGenetic defects of metabolism [UMCN 5.1]Ear InnerMultiprotein ComplexesCateninSynapsessense organsUsher SyndromesPhotoreceptor Cells Vertebrate
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