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Cation transport by a redox-active synthetic ion channel
Authors:Hall Adam C  Suarez Cristina  Hom-Choudhury Anindita  Manu Aida N  Hall C Dennis  Kirkovits Gregory J  Ghiriviga Ion
Affiliation:Department of Biological Sciences, Smith College, MA 01063, USA. ahall@smith.edu
Abstract:The synthesis, cation binding and transmembrane conductive properties of a novel group of synthetic ion channels containing a redox-active centre are described. Experiments using a black lipid membrane preparation revealed that these compounds function effectively as ion channels. Subsequent 23Na NMR spectroscopy studies focused on a synthesized ion channel with a ferrocene centre. When incorporated in vesicular bilayers, this channel was demonstrated to support a Na+ flux that was at least six times faster than ion transport by monensin. Since oxidation of the ferrocene moiety completely inhibited the Na+ transport, the redox-active centre provides a potential mechanism for controlling ion flux.
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