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FEBS Letters|December 10, 1990
Activation of red cell Ca2(+)-activated K+ channel by Ca2+ involves a temperature-dependent stepL Varecka, E PeterajováBiochimica Et Biophysica Acta|April 25, 1986
Inhibition by divalent cations and sulphydryl reagents of the passive Ca2+ transport in human red blood cells observed in the presence of vanadateL Varecka, E Peterajová, J PogádyFEBS Letters|December 10, 1987
Polymyxin B, a novel inhibitor of red cell Ca2+-activated K+ channelL Varecka, E Peterajová, J PogádyGeneral Physiology and Biophysics|May 22, 1998
Vanadate changes Ca2+ influx pathway properties in human red blood cellsL Varecka, E Peterajová, J SevcíkFEBS Letters|September 17, 1998
Properties of the Ca2+ influx reveal the duality of events underlying the activation by vanadate and fluoride of the Gárdos effect in human red blood cellsL Varecka, E Peterajová, E PísováBiochemical and Biophysical Research Communications|December 5, 1995
The Ca(2+)-dependent activation by fluoride of human red cell membrane sodium permeability: evidence for a chemically activated tetrodotoxin-sensitive Na+ channelL Varecka, E Peterajová, J SevcíkGeneral Physiology and Biophysics|May 22, 1998
Ca(2+)-activated K+ channel and the activation of Ca2+ influx in vanadate-treated red blood cellsL Varecka, E Peterajová, J SevcíkGeneral Physiology and Biophysics|April 1, 1994
Vanadate and fluoride activate red cell Na+ permeability by different mechanismL Varecka, E Peterajová, E Písová, et al.General Physiology and Biophysics|April 16, 2003
Investigation of properties of the Ca2+ influx and of the Ca2+-activated K+ efflux (Gárdos effect) in vanadate-treated and ATP-depleted human red blood cellsK Kaiserová, B Lakatos, E Peterajová, et al.General Physiology and Biophysics|February 1, 1994
Characteristics of the passive 45Ca2+ transport by human blood platelets. Their dependence on the monovalent cation composition of the suspension mediaS Nejedlíková, L VareckaPageof 3