The two-pore domain K+ channel TRESK is expressed in dorsal root ganglion and trigeminal sensory neurons where it is a major contributor to background K+ current. TRESK acts as a break to prevent excessive sensory neuron activation and decreases in its expression or function have been involved in neuronal hyperexcitability after injury/inflammation, migraine or altered sensory perception (tingling, cooling and pungent burning sensations). All these effects have implicated this channel in nociception and mechanotransduction. To determine the role of TRESK in sensory transduction, we studied its sensitivity to changes in membrane tension (stretch) in heterologous systems, F-11 cells and trigeminal neurons. Laminar shear stress increased TRESK...
TWIK-related spinal cord K+ channel (TRESK) is the gene product of KCNK18, the last discovered leak ...
<p><b>A.</b> Current-voltage relationship of single channel openings at different membrane voltages ...
The two-pore potassium channel, TRESK has been implicated in nociception and pain disorders. We have...
The two-pore domain K+ channel TRESK is expressed in dorsal root ganglion and trigeminal sensory neu...
The two-pore domain K+ channel TRESK is expressed in dorsal root ganglion and trigeminal sensory neu...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
TRESK belongs to the K2P family of potassium channels, also known as background or leak potassium ch...
Background: Neuronal hyperexcitability is a crucial phenomenon underlying spontaneous and evoked pai...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
Abstract Background Neuronal hyperexcitability is a crucial phenomenon underlying spontaneous and ev...
The two-pore potassium channel, TRESK has been implicated in nociception and pain disorders. We have...
Background potassium-permeable ion channels play a critical role in tuning the excitability of nocic...
The background K+ channel TRESK regulates sensory neuron excitability and changes in its function/ex...
<p><b>A.</b> Total whole-cell K<sup>+</sup> current of a small trigeminal sensory neuron in the pres...
TWIK-related spinal cord K+ channel (TRESK) is the gene product of KCNK18, the last discovered leak ...
<p><b>A.</b> Current-voltage relationship of single channel openings at different membrane voltages ...
The two-pore potassium channel, TRESK has been implicated in nociception and pain disorders. We have...
The two-pore domain K+ channel TRESK is expressed in dorsal root ganglion and trigeminal sensory neu...
The two-pore domain K+ channel TRESK is expressed in dorsal root ganglion and trigeminal sensory neu...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
TRESK belongs to the K2P family of potassium channels, also known as background or leak potassium ch...
Background: Neuronal hyperexcitability is a crucial phenomenon underlying spontaneous and evoked pai...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
Two-pore domain K+ (K2P) channels generate K+ leak current, which serves a vital role in controlling...
Abstract Background Neuronal hyperexcitability is a crucial phenomenon underlying spontaneous and ev...
The two-pore potassium channel, TRESK has been implicated in nociception and pain disorders. We have...
Background potassium-permeable ion channels play a critical role in tuning the excitability of nocic...
The background K+ channel TRESK regulates sensory neuron excitability and changes in its function/ex...
<p><b>A.</b> Total whole-cell K<sup>+</sup> current of a small trigeminal sensory neuron in the pres...
TWIK-related spinal cord K+ channel (TRESK) is the gene product of KCNK18, the last discovered leak ...
<p><b>A.</b> Current-voltage relationship of single channel openings at different membrane voltages ...
The two-pore potassium channel, TRESK has been implicated in nociception and pain disorders. We have...