3,4-diaminopyridine has been found to act very potently in selectively blocking the potassium channels of squid axon membranes. The apparent dissociation constants for this action are estimated to be 5.8 micron and 0.7 micron for external and internal applications, respectively, the potency being about 50 times higher than that of 4-aminopyridine. The block depends upon the membrane potential, time, and stimulus frequency. 3,4-diaminopyridine shows great promise as a useful tool for the study of membrane ionic channels
AbstractIn this study we compared polyamines to various diamines, and we modeled flexibility as well...
K+ channels are found in all animal cells where they play a key role in controlling the excitability...
Single-channel potassium currents from lobster axon membranes were studied in planar bilayers made f...
3,4-diaminopyridine has been found to act very potently in selectively blocking the potassium channe...
The effects of aminopyridines on ionic conductances of the squid giant axon membrane were examined u...
Aminopyridines are known to block potassium (K) currents in excitable membranes in a manner dependen...
Aminopyridines are known to block potassium (K) currents in excitable membranes in a manner dependen...
Measurements were made of the kinetic and steady-state characteristics of the potassium conductance ...
We have studied the effects of the tetra-n-alkylammonium (TAA) ions, (CnH2n+1)4N+, n = 1–6, on the p...
Although 4-aminopyndine (4-AP) is known to block a variety of voltage-dependent K channels, details ...
The interaction of QX222, a quaternary ammonium derivative of lidocaine, with the Na channel was stu...
Small conductance Ca2+ activated potassium channels (SKCa) occur in many cells but, until recently, ...
Novel pyridinium salts on the basis of 4-(3-pyridyl)-3,5-dipropargylcarbonyl-1,4-dihydropyridine wer...
The effects of phloretin on membrane ionic conductances have been studied in the giant axon of the s...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) are voltage-gated K+ channel subunits that underlie the neuronal M c...
AbstractIn this study we compared polyamines to various diamines, and we modeled flexibility as well...
K+ channels are found in all animal cells where they play a key role in controlling the excitability...
Single-channel potassium currents from lobster axon membranes were studied in planar bilayers made f...
3,4-diaminopyridine has been found to act very potently in selectively blocking the potassium channe...
The effects of aminopyridines on ionic conductances of the squid giant axon membrane were examined u...
Aminopyridines are known to block potassium (K) currents in excitable membranes in a manner dependen...
Aminopyridines are known to block potassium (K) currents in excitable membranes in a manner dependen...
Measurements were made of the kinetic and steady-state characteristics of the potassium conductance ...
We have studied the effects of the tetra-n-alkylammonium (TAA) ions, (CnH2n+1)4N+, n = 1–6, on the p...
Although 4-aminopyndine (4-AP) is known to block a variety of voltage-dependent K channels, details ...
The interaction of QX222, a quaternary ammonium derivative of lidocaine, with the Na channel was stu...
Small conductance Ca2+ activated potassium channels (SKCa) occur in many cells but, until recently, ...
Novel pyridinium salts on the basis of 4-(3-pyridyl)-3,5-dipropargylcarbonyl-1,4-dihydropyridine wer...
The effects of phloretin on membrane ionic conductances have been studied in the giant axon of the s...
KCNQ2 (Kv7.2) and KCNQ3 (Kv7.3) are voltage-gated K+ channel subunits that underlie the neuronal M c...
AbstractIn this study we compared polyamines to various diamines, and we modeled flexibility as well...
K+ channels are found in all animal cells where they play a key role in controlling the excitability...
Single-channel potassium currents from lobster axon membranes were studied in planar bilayers made f...