Area of research
Molecular Biology · Sensory Systems
Research interest
Research interests include Connexins and lens biology, Ion Channels and Receptors, Glaucoma and retinal disorders, and Ocular Surface and Contact Lens.
TRPV4 activation by TGFβ2 enhances cellular contractility and drives ocular hypertension
Emergent Temporal Signaling in Human Trabecular Meshwork Cells: Role of TRPV4-TRPM4 Interactions
TRPV4: Cell type-specific activation, regulation and function in the vertebrate eye
<scp>TRPV4</scp> channels mediate the mechanoresponse in retinal microglia
TRPV1 activation stimulates NKCC1 and increases hydrostatic pressure in the mouse lens
Volume sensing in the transient receptor potential vanilloid 4 ion channel is cell type–specific and mediated by an N-terminal volume-sensing domain
Calcium influx through TRPV4 channels modulates the adherens contacts between retinal microvascular endothelial cells
TRPV4 regulates calcium homeostasis, cytoskeletal remodeling, conventional outflow and intraocular pressure in the mammalian eye
Differential volume regulation and calcium signaling in two ciliary body cell types is subserved by TRPV4 channels
The ventral dentate gyrus mediates pattern separation for reward value.
TRPV1 and Endocannabinoids: Emerging Molecular Signals that Modulate Mammalian Vision