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Citation: Ro. Koch et al., Design and use of antibodies for mapping K+ channel expression in the cardiovascular system, POTASSIUM CHANNELS IN CARDIOVASCULAR BIOLOGY, 2001, pp. 91-102
Authors:
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Citation: Hj. Gruber et al., Anomalous fluorescence enhancement of Cy3 and Cy3.5 versus anomalous fluorescence loss of Cy5 and Cy7 upon covalent linking to IgG and noncovalent binding to avidin, BIOCONJ CHE, 11(5), 2000, pp. 696-704
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Citation: Hj. Gruber et al., Preparation of thiol-reactive Cy5 derivatives from commercial Cy5 succinimidyl ester, BIOCONJ CHE, 11(2), 2000, pp. 161-166
Authors:
Bond, CT
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Citation: Ct. Bond et al., Respiration and parturition affected by conditional overexpression of the Ca2+-activated K+ channel subunit, SK3, SCIENCE, 289(5486), 2000, pp. 1942-1946
Authors:
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Citation: C. Legros et al., Grenerating a high affinity scorpion toxin receptor in KcsA-Kv1.3 chimericpotassium channels, J BIOL CHEM, 275(22), 2000, pp. 16918-16924
Authors:
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Citation: P. Eller et al., High affinity interaction of mibefradil with voltage-gated calcium and sodium channels, BR J PHARM, 130(3), 2000, pp. 669-677
Authors:
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Citation: M. Grunnet et al., Quantification and distribution of Ca2+-activated maxi K+ channels in rabbit distal colon, AM J P-GAST, 40(1), 1999, pp. G22-G30
Authors:
Wanner, SG
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Citation: Sg. Wanner et al., WIN 17317-3, a new high-affinity probe for voltage-gated sodium channels, BIOCHEM, 38(34), 1999, pp. 11137-11146
Authors:
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Kaczorowski, GJ
Knaus, HG
Citation: Sg. Wanner et al., High-conductance calcium-activated potassium channels in rat brain: Pharmacology, distribution, and subunit composition, BIOCHEM, 38(17), 1999, pp. 5392-5400