Area of research
Molecular Biology · Sensory Systems
Research interest
Research interests include Hearing, Cochlea, Tinnitus, Genetics, Ion channel regulation and function, Muscle metabolism and nutrition, and Adipose Tissue and Metabolism.
Acute Lung Inflammation Prevention Efficacy of Cordyceps Militaris Extract
The Piezo channel is a mechano-sensitive complex component in the mammalian inner ear hair cell
Anti-Diabetic Effects of <i>Cordyceps Militaris</i> Extract on Weight, Blood Glucose, and Insulin Resistance in Diabetic Model Mice
Carbon monoxide-induced TFEB nuclear translocation enhances mitophagy/mitochondrial biogenesis in hepatocytes and ameliorates inflammatory liver injury
Carbon monoxide protects against hepatic steatosis in mice by inducing sestrin-2 via the PERK-eIF2α-ATF4 pathway
Endoplasmic Reticulum Stress–Induced IRE1α Activation Mediates Cross-Talk of GSK-3β and XBP-1 To Regulate Inflammatory Cytokine Production
Carbon monoxide protects against hepatic ischemia/reperfusion injury by modulating the miR-34a/SIRT1 pathway
Etiology of distinct membrane excitability in pre- and posthearing auditory neurons relies on activity of Cl <sup>−</sup> channel TMEM16A
Functional Significance of K+ Channel β-Subunit KCNE3 in Auditory Neurons
Genetic, Cellular, and Functional Evidence for Ca<sup>2+</sup>Inflow through Ca<sub>v</sub>1.2 and Ca<sub>v</sub>1.3 Channels in Murine Spiral Ganglion Neurons
Adenylyl Cyclase Subtype–Specific Compartmentalization
Association of the Kv1 family of K<sup>+</sup> channels and their functional blueprint in the properties of auditory neurons as revealed by genetic and functional analyses
Posthearing Ca<sup>2+</sup>Currents and Their Roles in Shaping the Different Modes of Firing of Spiral Ganglion Neurons