International audienceBradykinin (Bk) is a potent inflammatory mediator that causes hyperalgesia. The action of Bk on the sensory system is well documented but its effects on motoneurons, the final pathway of the motor system, are unknown. By a combination of patch-clamp recordings and two-photon calcium imaging, we found that Bk strongly sensitizes spinal motoneurons. Sensitization was characterized by an increased ability to generate self-sustained spiking in response to excitatory inputs. Our pharmacological study described a dual ionic mechanism to sensitize motoneurons, including inhibition of a barium-sensitive resting K + conductance and activation of a nonselective cationic conductance primarily mediated by Na +. Examination of the ...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...
The mechanisms by which kinins induce hyperalgesia in the spinal cord were investigated by using B1 ...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
TRPV1 ion channels have crucial roles in inflammatory hyperalgesia as TRPV1-/- mice show reduced the...
The perception of pain - burning, aching and soreness - acts as a physiological warning that protect...
Bradykinin (BK) is an inflammatory mediator that can evoke oedema and vasodilatation, and is a poten...
AbstractBradykinin (BK) is a peptide mediator released in inflammation that potently excites sympath...
Abstract Background Nociceptive responses to noxious stimuli are initiated at peripheral nociceptor ...
Summary: The in vivo function of large conductance calcium‐activated potassium channels in sensory n...
Bradykinin (BK) has long been recognized as an important mediator of pain and inflammation. In norma...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Bradykinin (BK) is an inflammatory mediator that can evoke oedema and vasodilatation, and is a poten...
AbstractPain is unique among sensations in that the perceived intensity increases, or sensitizes, du...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...
The mechanisms by which kinins induce hyperalgesia in the spinal cord were investigated by using B1 ...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing subs...
TRPV1 ion channels have crucial roles in inflammatory hyperalgesia as TRPV1-/- mice show reduced the...
The perception of pain - burning, aching and soreness - acts as a physiological warning that protect...
Bradykinin (BK) is an inflammatory mediator that can evoke oedema and vasodilatation, and is a poten...
AbstractBradykinin (BK) is a peptide mediator released in inflammation that potently excites sympath...
Abstract Background Nociceptive responses to noxious stimuli are initiated at peripheral nociceptor ...
Summary: The in vivo function of large conductance calcium‐activated potassium channels in sensory n...
Bradykinin (BK) has long been recognized as an important mediator of pain and inflammation. In norma...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
Bradykinin (BK) is an inflammatory mediator that can evoke oedema and vasodilatation, and is a poten...
AbstractPain is unique among sensations in that the perceived intensity increases, or sensitizes, du...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...
The mechanisms by which kinins induce hyperalgesia in the spinal cord were investigated by using B1 ...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...