BackgroundOverexpression of the voltage-gated calcium channel (VGCC) alpha-2-delta1 subunit protein (Cav α2 δ1 ) has been shown to cause pain states. However, whether VGCC are involved in pain states driven by abnormal Cav α2 δ1 expression is not known.MethodsIntrathecal injection of N-, P/Q- and L-type VGCC blockers were tested in two models: a transgenic neuronal Cav α2 δ1 overexpression (TG) model with behavioural hypersensitivity and a spinal nerve ligation (SNL) model with Cav α2 δ1 overexpression in sensory pathways and neuropathy pain states.ResultsThe nociceptive response to mechanical stimuli was significantly attenuated in both models with ω-conotoxin GVIA (an N-type VGCC blocker) and nifedipine (an L-type VGCC blocker), in which ...
Neuronal voltage-gated N-type (Ca(v)2.2) calcium channels are expressed throughout the nervous syste...
Chronic pain affects approximately 20% of people worldwide and places a large economic and social bu...
Voltage-dependent Ca2+ channels (VDCCs) have emerged as targets to treat neuropathic pain; however, ...
Voltage-gated calcium channels (VGCCs) play important roles in physiological functions including the...
AbstractN-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into oth...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Ca2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellul...
BackgroundVoltage-gated calcium channel α2 δ1 subunit is the binding site for gabapentin, an effecti...
Neuropathic pain is mainly triggered after nerve injury and associated with plasticity of the nocice...
Monika Jeub,1,2,* Omneya Taha,1,2,* Thoralf Opitz,2 Ildiko Racz,3,4 Julika Pitsch,5 Albert Becker,5 ...
International audienceBackground and purpose: T-type calcium channels, mainly the Cav 3.2 subtype, a...
International audienceBackground and purpose: T-type calcium channels, mainly the Cav 3.2 subtype, a...
The role of voltage-gated Ca2+ (Ca-v) channels in pain mechanisms has been the object of intense inv...
The Cav3.2 isoform of the T-type calcium channel is expressed in primary sensory neurons of the dors...
Neuronal voltage-gated N-type (Ca(v)2.2) calcium channels are expressed throughout the nervous syste...
Chronic pain affects approximately 20% of people worldwide and places a large economic and social bu...
Voltage-dependent Ca2+ channels (VDCCs) have emerged as targets to treat neuropathic pain; however, ...
Voltage-gated calcium channels (VGCCs) play important roles in physiological functions including the...
AbstractN-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into oth...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Cav2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellu...
N-type (Ca2.2) voltage-gated calcium channels (VGCC) transduce electrical activity into other cellul...
BackgroundVoltage-gated calcium channel α2 δ1 subunit is the binding site for gabapentin, an effecti...
Neuropathic pain is mainly triggered after nerve injury and associated with plasticity of the nocice...
Monika Jeub,1,2,* Omneya Taha,1,2,* Thoralf Opitz,2 Ildiko Racz,3,4 Julika Pitsch,5 Albert Becker,5 ...
International audienceBackground and purpose: T-type calcium channels, mainly the Cav 3.2 subtype, a...
International audienceBackground and purpose: T-type calcium channels, mainly the Cav 3.2 subtype, a...
The role of voltage-gated Ca2+ (Ca-v) channels in pain mechanisms has been the object of intense inv...
The Cav3.2 isoform of the T-type calcium channel is expressed in primary sensory neurons of the dors...
Neuronal voltage-gated N-type (Ca(v)2.2) calcium channels are expressed throughout the nervous syste...
Chronic pain affects approximately 20% of people worldwide and places a large economic and social bu...
Voltage-dependent Ca2+ channels (VDCCs) have emerged as targets to treat neuropathic pain; however, ...