2024
Revisiting the Potency of Tbx2 Expression in Transforming Outer Hair Cells into Inner Hair Cells at Multiple Ages In Vivo
Bi Z, Ren M, Zhang Y, He S, Song L, Li X, Liu Z. Revisiting the Potency of Tbx2 Expression in Transforming Outer Hair Cells into Inner Hair Cells at Multiple Ages In Vivo. Journal Of Neuroscience 2024, 44: e1751232024. PMID: 38688721, PMCID: PMC11154855, DOI: 10.1523/jneurosci.1751-23.2024.Peer-Reviewed Original Research
2022
Outer hair cell function is normal in βV spectrin knockout mice
Stankewich MC, Bai JP, Stabach PR, Khan S, Tan WJT, Surguchev A, Song L, Morrow JS, Santos-Sacchi J, Navaratnam DS. Outer hair cell function is normal in βV spectrin knockout mice. Hearing Research 2022, 423: 108564. PMID: 35864018, DOI: 10.1016/j.heares.2022.108564.Peer-Reviewed Original ResearchConceptsOuter hair cellsAuditory brainstem response wavesAuditory thresholdOuter hair cell functionSpiral ganglion neuronsEfferent nerve fibersHair cell functionNumber of afferentsGanglion neuronsNerve fibersKnockout miceNeuronal structuresMiceHair cellsCell functionElectromechanical activityPutative roleType IOngoing investigationExon deletionsSynaptopathyAfferentsData supportResponse wavesNeuronsPrestin-Mediated Frequency Selectivity Does not Cover Ultrahigh Frequencies in Mice
Li J, Liu S, Song C, Zhu T, Zhao Z, Sun W, Wang Y, Song L, Xiong W. Prestin-Mediated Frequency Selectivity Does not Cover Ultrahigh Frequencies in Mice. Neuroscience Bulletin 2022, 38: 769-784. PMID: 35279808, PMCID: PMC9276951, DOI: 10.1007/s12264-022-00839-4.Peer-Reviewed Original ResearchConceptsOuter hair cellsCation channel blockerCochlear outer hair cellsPrestin knockout miceAudiometric measurementsChannel blockersPharmacogenetic manipulationCochlear sensitivityMiceSpecific ablationHair cellsTarget cellsBehavior testsHearingMembrane potentialLow-pass featureAblationUltrasonic hearingCellsPrestinBlockersMembrane resonanceIn vivo CRISPR‐Cas9‐mediated DNA chop identifies a cochlear outer hair cell‐specific enhancer
Sun Y, Zhang Y, Zhang D, Wang G, Song L, Liu Z. In vivo CRISPR‐Cas9‐mediated DNA chop identifies a cochlear outer hair cell‐specific enhancer. The FASEB Journal 2022, 36: e22233. PMID: 35225354, DOI: 10.1096/fj.202100421rr.Peer-Reviewed Original ResearchConceptsDNA fragment deletionKbp fragmentKbp segmentFragment deletionCell-specific enhancerOuter hair cellsLarge DNA fragment deletionGreen fluorescent proteinCRISPR/Motor proteinsIntron regionsGene therapeutic applicationsFluorescent proteinDifferent speciesCochlear outer hair cellsBp fragmentEnhancerSLC26A5Hair cellsEGFPProteinTransgenic miceDeletionKbpPrestin expression
2020
Down-regulation of AMPK signaling pathway rescues hearing loss in TFB1 transgenic mice and delays age-related hearing loss
Zhao J, Li G, Zhao X, Lin X, Gao Y, Raimundo N, Li G, Shang W, Wu H, Song L. Down-regulation of AMPK signaling pathway rescues hearing loss in TFB1 transgenic mice and delays age-related hearing loss. Aging 2020, 12: 5590-5611. PMID: 32240104, PMCID: PMC7185105, DOI: 10.18632/aging.102977.Peer-Reviewed Original ResearchConceptsReactive oxygen speciesPro-survival functionRole of AMPKRegulation of AMPKActivation of AMPKAnti-apoptotic signalingPro-apoptotic signalingProtein kinaseOuter hair cellsAMPK activationAMPK hyperactivationROS-AMPKSpiral ganglion neuronsAMPK downregulationApoptosis pathwayHair cell synapsesAMPKMitochondrial dysfunctionCochlear tissuesCell growthRedox imbalanceBcl2 pathwayInner hair cell synapsesOxygen speciesHair cellsMaturation of Voltage-induced Shifts in SLC26a5 (Prestin) Operating Point during Trafficking and Membrane Insertion
Zhai F, Song L, Bai JP, Dai C, Navaratnam D, Santos-Sacchi J. Maturation of Voltage-induced Shifts in SLC26a5 (Prestin) Operating Point during Trafficking and Membrane Insertion. Neuroscience 2020, 431: 128-133. PMID: 32061780, PMCID: PMC8720582, DOI: 10.1016/j.neuroscience.2020.02.003.Peer-Reviewed Original ResearchConceptsMembrane motor proteinVoltage-dependent proteinsMembrane insertionOuter hair cellsMotor proteinsPrestin densityHEK cell linesConformational changesBiophysical forcesOHC electromotilityProteinCell linesMembrane potentialCooperative interactionsPrestinHair cellsCochlear amplificationTransmembrane voltageNonlinear capacitanceMammalsTraffickingVoltage-induced shiftElectromotilityMaturationMembrane
2018
Characterizing a novel vGlut3-P2A-iCreER knockin mouse strain in cochlea
Li C, Shu Y, Wang G, Zhang H, Lu Y, Li X, Li G, Song L, Liu Z. Characterizing a novel vGlut3-P2A-iCreER knockin mouse strain in cochlea. Hearing Research 2018, 364: 12-24. PMID: 29706463, DOI: 10.1016/j.heares.2018.04.006.Peer-Reviewed Original ResearchMeSH KeywordsAcoustic StimulationAmino Acid Transport Systems, AcidicAnimalsCochleaEvoked Potentials, Auditory, Brain StemFemaleGene Knock-In TechniquesGenes, ReporterGenotypeHair Cells, Auditory, OuterIntegrasesLuminescent ProteinsMaleMice, Inbred C57BLMice, TransgenicNeurogliaPhenotypeReaction TimeReceptors, EstrogenSelective Estrogen Receptor ModulatorsSpiral GanglionTamoxifenTime FactorsConceptsInner hair cellsOuter hair cellsSpiral ganglion neuronsKnockin mouse strainGlia cellsVesicular glutamate transporter 3Mouse strainsHair cellsCochlear outer hair cellsRosa26-LSLVGLUT3 expressionGanglion neuronsVGLUT3Mouse cochleaTransporter 3Negative cellsMouse genetic studiesAntibody stainingTamoxifenUnique expression patternP2/P3Specific cell typesCell typesSitu hybridizationCochlea
2015
Auditory Pathology in a Transgenic mtTFB1 Mouse Model of Mitochondrial Deafness
McKay SE, Yan W, Nouws J, Thormann MJ, Raimundo N, Khan A, Santos-Sacchi J, Song L, Shadel GS. Auditory Pathology in a Transgenic mtTFB1 Mouse Model of Mitochondrial Deafness. American Journal Of Pathology 2015, 185: 3132-3140. PMID: 26552864, PMCID: PMC5801480, DOI: 10.1016/j.ajpath.2015.08.014.Peer-Reviewed Original ResearchMeSH KeywordsAMP-Activated Protein KinasesAnimalsApoptosisDeafnessDisease Models, AnimalDNA, MitochondrialEvoked Potentials, Auditory, Brain StemHair Cells, Auditory, InnerMice, Inbred C57BLMice, KnockoutMice, TransgenicMitochondrial DiseasesMutationOrgan of CortiReaction TimeSignal TransductionSpiral GanglionStria VascularisTranscription FactorsConceptsAMP kinaseReactive oxygen species-mediated activationTranscription factor E2F1A1555G mutationAuditory pathologyHair cellsTFB1MHearing loss phenotypeRRNA geneAMPK-α1AMPK activityProlonged wave I latencyLoss phenotypeMitochondrial pathologyNonsyndromic deafnessTransgenic mouse strainWave I latencySpiral ganglion neuronsProgressive hearing lossMitochondrial deafnessPotential therapeutic valueDNA causeG mutationOuter hair cellsI latency
2010
Effect of capsaicin on potassium conductance and electromotility of the guinea pig outer hair cell
Wu T, Song L, Shi X, Jiang Z, Santos-Sacchi J, Nuttall A. Effect of capsaicin on potassium conductance and electromotility of the guinea pig outer hair cell. Hearing Research 2010, 272: 117-124. PMID: 21044673, PMCID: PMC3387680, DOI: 10.1016/j.heares.2010.10.010.Peer-Reviewed Original ResearchConceptsOuter hair cellsTRPV-1 channelsHair cellsPrimary sensory neuronsEffects of capsaicinGuinea pig outer hair cellsSensory neuronsPharmacological actionsCapsaicinPotassium conductancePotent blockerPharmacological propertiesDirect actionNovel actionCochlear amplificationK conductanceAuditory effectsClassic activatorAuditory receptionCellsNociceptionElectromotilityBlockersNew findingsNeurons