Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents (IM) and to increase the excitability of the superior cervical ganglion (SCG) neurons by activating the Ca2+-calmodulin pathway. M-current is also reduced by muscarinic agonists through the depletion of membrane phosphatidylinositol 4,5-biphosphate (PIP2). Similarly, the activation of muscarinic receptors inhibits the current through two-pore domain potassium channels (K2P) of the “Tandem of pore-domains in a Weakly Inward rectifying K+ channel (TWIK)-related channels” (TREK) subfamily by reducing PIP2 in mouse SCG neurons (mSCG). The aim of this work was to test and characterize the modulation of TREK channels by bradykinin. We used the perf...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calc...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Background K2P channels play a key role in stabilizing the resting membrane potential, thereby modul...
AbstractBradykinin (BK) is a peptide mediator released in inflammation that potently excites sympath...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Recent evidence points to a pivotal contribution of a variety of different potassium channels, inclu...
Rat superior cervical ganglion (SCG) neurons express low-threshold noninactivating M-type potassium ...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
AbstractT-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Acc...
AbstractKCNQ channels belong to a family of potassium ion channels with crucial roles in physiology ...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
International audienceBradykinin (Bk) is a potent inflammatory mediator that causes hyperalgesia. Th...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calc...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Background K2P channels play a key role in stabilizing the resting membrane potential, thereby modul...
AbstractBradykinin (BK) is a peptide mediator released in inflammation that potently excites sympath...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of backgroun...
Recent evidence points to a pivotal contribution of a variety of different potassium channels, inclu...
Rat superior cervical ganglion (SCG) neurons express low-threshold noninactivating M-type potassium ...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
AbstractT-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Acc...
AbstractKCNQ channels belong to a family of potassium ion channels with crucial roles in physiology ...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
International audienceBradykinin (Bk) is a potent inflammatory mediator that causes hyperalgesia. Th...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...
The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calc...
The ionic mechanisms controlling the resting membrane potential (RMP) in superior cervical ganglion ...