Area of research
Sensory Systems · Molecular Biology
Research interest
Research focused on Autophagy and Hearing loss, with related work in Cell biology, Cochlea, Presbycusis. Notable publications include 'The nuclear transcription factor FoxG1 affects the sensitivity of mimetic aging hair cells to inflammation by regulating autophagy pathways', 'FOXG1 promotes aging inner ear hair cell survival through activation of the autophagy pathway', and 'Down regulated connexin26 at different postnatal stage displayed different types of cellular degeneration and formation of organ of Corti'.
Abnormal Innervation, Demyelination, and Degeneration of Spiral Ganglion Neurons as Well as Disruption of Heminodes are Involved in the Onset of Deafness in Cx26 Null Mice
The protective effects of systemic dexamethasone on sensory epithelial damage and hearing loss in targeted Cx26-null mice
F-Actin Dysplasia Involved in Organ of Corti Deformity in Gjb2 Knockdown Mouse Model
FOXG1 promotes aging inner ear hair cell survival through activation of the autophagy pathway
FOXG1 promotes aging inner ear hair cell survival through activation of the autophagy pathway
The nuclear transcription factor FoxG1 affects the sensitivity of mimetic aging hair cells to inflammation by regulating autophagy pathways
The spatial distribution pattern of Connexin26 expression in supporting cells and its role in outer hair cell survival
Reduced Connexin26 in the Mature Cochlea Increases Susceptibility to Noise-Induced Hearing Loss in Mice
Down regulated connexin26 at different postnatal stage displayed different types of cellular degeneration and formation of organ of Corti
Reduced expression of Connexin26 and its DNA promoter hypermethylation in the inner ear of mimetic aging rats induced by d-galactose