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Janus cyclic peptide-polymer nanotubes

  • Maarten Danial
  • , Carmen My-Nhi Tran
  • , Philip G. Young
  • , Sebastien Perrier
  • , Katrina A. Jolliffe

Research output: Contribution to journalArticleResearchpeer-review

Abstract

Self-assembled nanotubular structures have numerous potential applications but these are limited by a lack of control over size and functionality. Controlling these features at the molecular level may allow realization of the potential of such structures. Here we report a new generation of self-assembled cyclic peptide-polymer nanotubes with dual functionality in the form of either a Janus or mixed polymeric corona. A 'relay' synthetic strategy is used to prepare nanotubes with a demixing or mixing polymeric corona. Nanotube structure is assessed in solution using 1 H- 1 H nuclear Overhauser effect spectroscopy NMR, and in bulk using differential scanning calorimetry. The Janus nanotubes form artificial pores in model phospholipid bilayers. These molecules provide a viable pathway for the development of intriguing nanotubular structures with dual functionality via a demixing or a mixing polymeric corona and may provide new avenues for the creation of synthetic transmembrane protein channel mimics. 

Original languageEnglish
Article number2780
JournalNature Communications
Volume4
DOIs
Publication statusPublished - 2013
Externally publishedYes

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