The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calcium channels in the clonal dorsal root ganglion cell line F11-B9. The pain-producing peptide bradykinin (BK; 100 nM) reduced the sustained Ba2+ current in F11-B9 cells by 30%. In cultures prelabeled with 3H-arachidonic acid and tested under ionic conditions similar to those used for recording Ba2+ currents, BK also induced a concentration-dependent, transient, 2.7-fold accumulation of 3H-diacylglycerol. Both the elevation of 3H-diacylglycerol and the inhibition of Ba2+ current began within 5 sec following BK exposure, and the effective concentration range of BK was similar for the 2 responses. In whole-cell recordings, extracellularly applied...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
1. The effects of activation of protein kinase C (PKC) on membrane currents gated by capsaicin, prot...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...
The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calc...
AbstractWe studied the action of bradykinin (BK) on ionic currents in fused pheochromocytoma PC12 ce...
1. Currents through voltage-activated Ca2+ channels in rat dorsal root ganglion (DRG) x mouse neurob...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
Bradykinin-induced formation of [3H]inositol-l,4,5 trisphosphate ([3H]IP3) in cultured neonatal rat ...
AbstractApplication of bradykinin to voltage-clamped N1E-115 mouse neuroblastoma cells evoked sequen...
ford. Differential responses of Ca-activated K channels to bradykinin in sensory neurons and F-11 ce...
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...
T-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Accordingly...
AbstractModulation of Ca2+ channels by neurotransmitters provides critical control of neuronal excit...
AbstractT-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Acc...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
1. The effects of activation of protein kinase C (PKC) on membrane currents gated by capsaicin, prot...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...
The whole-cell patch-clamp technique was used to record Ba2+ currents through voltage-activated calc...
AbstractWe studied the action of bradykinin (BK) on ionic currents in fused pheochromocytoma PC12 ce...
1. Currents through voltage-activated Ca2+ channels in rat dorsal root ganglion (DRG) x mouse neurob...
Bradykinin (BK) excites dorsal root ganglion cells, leading to the sensation of pain. The actions of...
Bradykinin-induced formation of [3H]inositol-l,4,5 trisphosphate ([3H]IP3) in cultured neonatal rat ...
AbstractApplication of bradykinin to voltage-clamped N1E-115 mouse neuroblastoma cells evoked sequen...
ford. Differential responses of Ca-activated K channels to bradykinin in sensory neurons and F-11 ce...
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...
T-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Accordingly...
AbstractModulation of Ca2+ channels by neurotransmitters provides critical control of neuronal excit...
AbstractT-type Ca2+ channels are important regulators of peripheral sensory neuron excitability. Acc...
Bradykinin (BK), a hormone inducing pain and inflammation, is known to inhibit potassium M-currents ...
1. The effects of activation of protein kinase C (PKC) on membrane currents gated by capsaicin, prot...
Bradykinin is the prime initiator of pain and the key initial activator of the inflammatory response...