Area of research
Physiology · Molecular Biology
Research interest
Research interests include Medicine, Voltage-dependent calcium channel, Neuroscience, Sodium channel, Chemistry, and Dorsal root ganglion.
Small molecule targeting NaV1.7 via inhibition of CRMP2-Ubc9 interaction reduces pain-related outcomes in a rodent osteoarthritic model
C2230, a preferential use- and state-dependent CaV2.2 channel blocker, mitigates pain behaviors across multiple pain models
Identification and targeting of a unique Na <sub>V</sub> 1.7 domain driving chronic pain
A peptidomimetic modulator of the Ca <sub>V</sub> 2.2 N-type calcium channel for chronic pain
Neuropilin-1 is essential for vascular endothelial growth factor A–mediated increase of sensory neuron activity and development of pain-like behaviors
The Ca <sup>2+</sup> channel ORAI1 is a regulator of oral cancer growth and nociceptive pain
Intranasal CRMP2-Ubc9 inhibitor regulates NaV1.7 to alleviate trigeminal neuropathic pain
Plant and fungi derived analgesic natural products targeting voltage-gated sodium and calcium channels
The natural product argentatin C attenuates postoperative pain via inhibition of voltage‐gated sodium and T‐type voltage‐gated calcium channels