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Multistate Redox-Switchable Ion Transport Using Chalcogen-Bonding Anionophores.

Andrew DockerToby G JohnsonHeike KuhnZongyao ZhangMatthew J Langton
Published in: Journal of the American Chemical Society (2023)
Synthetic supramolecular transmembrane anionophores have emerged as promising anticancer chemotherapeutics. However, key to their targeted application is achieving spatiotemporally controlled activity. Herein, we report a series of chalcogen-bonding diaryl tellurium-based transporters in which their anion binding potency and anionophoric activity are controlled through reversible redox cycling between Te oxidation states. This unprecedented in situ reversible multistate switching allows for switching between ON and OFF anion transport and is crucially achieved with biomimetic chemical redox couples.
Keyphrases
  • electron transfer
  • ionic liquid
  • cancer therapy
  • nitric oxide
  • binding protein
  • drug delivery
  • transcription factor