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Controlled Membrane Transport in Polymeric Biomimetic Nanoreactors.

Shoupeng CaoTsvetomir IvanovMarina de Souza MelchiorsKatharina LandfesterLucas Caire da Silva
Published in: Chembiochem : a European journal of chemical biology (2023)
Polymersome-based biomimetic nanoreactors (PBNs) have generated great interest in nanomedicine and cell mimicry due to their robustness, tuneable chemistry, and broad applicability in biologically relevant fields. In this concept review, we mainly discuss the state of the art in functional polymersomes as biomimetic nanoreactors with membrane-controlled transport. PBNs that use environmental changes or external stimuli to adjust membrane permeability while maintaining structural integrity are highlighted. By encapsulating catalytic species, PBNs are able to convert inactive substrates into functional products in a controlled manner. In addition, special attention is paid to the use of PBNs as tailored artificial organelles with biomedical applications in vitro and in vivo, facilitating the fabrication of next-generation artificial organelles as therapeutic nanocompartments.
Keyphrases
  • tissue engineering
  • cancer therapy
  • single cell
  • working memory
  • cell therapy
  • stem cells
  • endothelial cells
  • risk assessment
  • mesenchymal stem cells
  • human health
  • genetic diversity