Iodide-Selective Synthetic Ion Channels Based on Shape-Persistent Organic Cages

We report here a synthetic ion channel developed from a shape-persistent porphyrin-based covalent organic cage. The cage was synthesized by employing a synthetically economical dynamic covalent chemistry (DCC) approach. The organic cage selectively transports biologically relevant iodide ions over o...

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Veröffentlicht in:Journal of the American Chemical Society 2017-06, Vol.139 (22), p.7432-7435
Hauptverfasser: Benke, Bahiru Punja, Aich, Pulakesh, Kim, Younghoon, Kim, Kyung Lock, Rohman, Md Rumum, Hong, Soonsang, Hwang, In-Chul, Lee, Eun Hui, Roh, Joon Ho, Kim, Kimoon
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Sprache:eng
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Zusammenfassung:We report here a synthetic ion channel developed from a shape-persistent porphyrin-based covalent organic cage. The cage was synthesized by employing a synthetically economical dynamic covalent chemistry (DCC) approach. The organic cage selectively transports biologically relevant iodide ions over other inorganic anions by a dehydration-driven, channel mechanism as evidenced by vesicle-based fluorescence assays and planar lipid bilayer-based single channel recordings. Furthermore, the organic cage appears to facilitate iodide transport across the membrane of a living cell, suggesting that the cage could be useful as a biological tool that may replace defective iodide channels in living systems.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.7b02708