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Self-assembly of peptide nanocapsules by a solvent concentration gradient

  • Haopeng Li,
  • Xuliang Qian,
  • Harini Mohanram,
  • Xiao Han,
  • Huitang Qi,
  • Guijin Zou,
  • Fenghou Yuan,
  • Ali Miserez,
  • Tian Liu,
  • Qing Yang,
  • Huajian Gao,
  • Jing Yu

摘要

Biological systems can create materials with intricate structures and specialized functions. In comparison, precise control of structures in human-made materials has been challenging. Here we report on insect cuticle peptides that spontaneously form nanocapsules through a single-step solvent exchange process, where the concentration gradient resulting from the mixing of water and acetone drives the localization and self-assembly of the peptides into hollow nanocapsules. The underlying driving force is found to be the intrinsic affinity of the peptides for a particular solvent concentration, while the diffusion of water and acetone creates a gradient interface that triggers peptide localization and self-assembly. This gradient-mediated self-assembly offers a transformative pathway towards simple generation of drug delivery systems based on peptide nanocapsules.