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D N Sheppard

Showing results (1-10 of 32) with videos related to

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The Journal of General Physiology|October 1, 1992
Effect of ATP-sensitive K+ channel regulators on cystic fibrosis transmembrane conductance regulator chloride currentsD N Sheppard, M J Welsh
Trends in Pharmacological Sciences|November 5, 1999
Molecular pharmacology of the CFTR Cl- channelT C Hwang, D N Sheppard
Molecular Medicine Today|July 1, 1996
Understanding how cystic fibrosis mutations cause a loss of Cl- channel functionD N Sheppard, L S Ostedgaard
Physiological Reviews|January 29, 1999
Structure and function of the CFTR chloride channelD N Sheppard, M J Welsh
The Journal of Physiology|November 5, 1997
Mechanism of glibenclamide inhibition of cystic fibrosis transmembrane conductance regulator Cl- channels expressed in a murine cell lineD N Sheppard, K A Robinson
British Journal of Pharmacology|September 28, 1999
Inhibition of heterologously expressed cystic fibrosis transmembrane conductance regulator Cl- channels by non-sulphonylurea hypoglycaemic agentsZ Cai, K A Lansdell, D N Sheppard
FEBS Letters|July 18, 1988
K+ channels activated by L-alanine transport in isolated Necturus enterocytesD N Sheppard, F Giraldez, F V Sepúlveda
The Journal of Membrane Biology|October 1, 1988
Kinetics of voltage- and Ca2+ activation and Ba2+ blockade of a large-conductance K+ channel from Necturus enterocytesD N Sheppard, F Giraldez, F V Sepúlveda
The Journal of Physiology|January 1, 1988
A chloride conductance activated by adenosine 3',5'-cyclic monophosphate in the apical membrane of Necturus enterocytesF Giraldez, F V Sepúlveda, D N Sheppard
Neuroscience|December 1, 1992
Development of Na(+)- and K(+)-currents in the cochlear ganglion of the chick embryoM A Valverde, D N Sheppard, J Represa, et al.
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
The Journal of General Physiology|October 1, 1992
Effect of ATP-sensitive K+ channel regulators on cystic fibrosis transmembrane conductance regulator chloride currentsD N Sheppard, M J Welsh
Trends in Pharmacological Sciences|November 5, 1999
Molecular pharmacology of the CFTR Cl- channelT C Hwang, D N Sheppard
Molecular Medicine Today|July 1, 1996
Understanding how cystic fibrosis mutations cause a loss of Cl- channel functionD N Sheppard, L S Ostedgaard
Physiological Reviews|January 29, 1999
Structure and function of the CFTR chloride channelD N Sheppard, M J Welsh
The Journal of Physiology|November 5, 1997
Mechanism of glibenclamide inhibition of cystic fibrosis transmembrane conductance regulator Cl- channels expressed in a murine cell lineD N Sheppard, K A Robinson
British Journal of Pharmacology|September 28, 1999
Inhibition of heterologously expressed cystic fibrosis transmembrane conductance regulator Cl- channels by non-sulphonylurea hypoglycaemic agentsZ Cai, K A Lansdell, D N Sheppard
FEBS Letters|July 18, 1988
K+ channels activated by L-alanine transport in isolated Necturus enterocytesD N Sheppard, F Giraldez, F V Sepúlveda
The Journal of Membrane Biology|October 1, 1988
Kinetics of voltage- and Ca2+ activation and Ba2+ blockade of a large-conductance K+ channel from Necturus enterocytesD N Sheppard, F Giraldez, F V Sepúlveda
The Journal of Physiology|January 1, 1988
A chloride conductance activated by adenosine 3',5'-cyclic monophosphate in the apical membrane of Necturus enterocytesF Giraldez, F V Sepúlveda, D N Sheppard
Neuroscience|December 1, 1992
Development of Na(+)- and K(+)-currents in the cochlear ganglion of the chick embryoM A Valverde, D N Sheppard, J Represa, et al.
Pageof 4