Vascular smooth muscle voltage-gated potassium (Kv) channels have been proposed to contribute to myogenic autoregulation. Surprisingly, in initial experiments, we observed that the Kv2 channel inhibitor stromatoxin induced vasomotion without affecting myogenic tone. Thus, we tested the hypothesis that Kv2 channels contribute to myogenic autoregulation by fine-tuning the myogenic response. Expression of Kv2 channel mRNA was determined using real-time PCR and ‘multiplex’ single-cell RT-PCR. Potassium currents were measured using the patch-clamp technique. Contractile responses of intact arteries were studied using isobaric myography. Expression of Kv2.1 but not Kv2.2 channels was detected in intact rat superior cerebellar arteries and in sing...
K(+) channels play indispensable roles in establishing the membrane potential and in regulating the ...
The following documents our attempt at answering a fundamental question in vascular smooth muscle: W...
Arterial tone is tightly regulated by a variety of potassium (K+ ) permeable ion channels at the sar...
Abstract—Small arteries play an essential role in the regulation of blood pressure and organ-specifi...
Background and Purpose: KV 7.1 voltage-gated potassium channels are expressed in vascular smooth mus...
Voltage-dependent K+ (Kv) channels represent the most diverse group of K+ channels ubiquitously expr...
adds to an expanding body of evidence suggesting pivotal roles of the voltage-gated potassium channe...
Voltage-gated potassium channels (Kv) are important regulators of membrane potential in vascular smo...
Arteriolar myogenic vasoconstriction occurs when increased stretch or membrane tension leads to smoo...
Voltage-gated potassium (KV ) channels are key regulators of vascular smooth muscle contractility an...
Voltage-gated potassium channels (Kv) are important regulators of membrane potential in vascular smo...
Strong inward rectifying K+ (KIR) channels have been observed in vascular smooth muscle and can disp...
Large-conductance Ca^2+ -activated K^+ (BKCa) channels play an important role in the regulation of v...
AbstractMyogenic, or pressure-induced, vasoconstriction is critical for local blood flow autoregulat...
This thesis focused 011 the role of voltage-gated K+ channels encoded by KCNQ genes (Kv 7 channell) ...
K(+) channels play indispensable roles in establishing the membrane potential and in regulating the ...
The following documents our attempt at answering a fundamental question in vascular smooth muscle: W...
Arterial tone is tightly regulated by a variety of potassium (K+ ) permeable ion channels at the sar...
Abstract—Small arteries play an essential role in the regulation of blood pressure and organ-specifi...
Background and Purpose: KV 7.1 voltage-gated potassium channels are expressed in vascular smooth mus...
Voltage-dependent K+ (Kv) channels represent the most diverse group of K+ channels ubiquitously expr...
adds to an expanding body of evidence suggesting pivotal roles of the voltage-gated potassium channe...
Voltage-gated potassium channels (Kv) are important regulators of membrane potential in vascular smo...
Arteriolar myogenic vasoconstriction occurs when increased stretch or membrane tension leads to smoo...
Voltage-gated potassium (KV ) channels are key regulators of vascular smooth muscle contractility an...
Voltage-gated potassium channels (Kv) are important regulators of membrane potential in vascular smo...
Strong inward rectifying K+ (KIR) channels have been observed in vascular smooth muscle and can disp...
Large-conductance Ca^2+ -activated K^+ (BKCa) channels play an important role in the regulation of v...
AbstractMyogenic, or pressure-induced, vasoconstriction is critical for local blood flow autoregulat...
This thesis focused 011 the role of voltage-gated K+ channels encoded by KCNQ genes (Kv 7 channell) ...
K(+) channels play indispensable roles in establishing the membrane potential and in regulating the ...
The following documents our attempt at answering a fundamental question in vascular smooth muscle: W...
Arterial tone is tightly regulated by a variety of potassium (K+ ) permeable ion channels at the sar...