Receptor-Targeted Dual pH-Triggered Intracellular Protein Transfer.

Meng Lyu, Mina Yazdi, Yi Lin, Miriam Höhn, U Lächelt, Ernst Wagner (Corresponding author)

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Protein therapeutics are of widespread interest due to their successful performance in the current pharmaceutical and medical fields, even though their broad applications have been hindered by the lack of an efficient intracellular delivery approach. Herein, we fabricated an active-targeted dual pH-responsive delivery system with favorable tumor cell entry augmented by extracellular pH-triggered charge reversal and tumor receptor targeting and pH-controlled endosomal release in a traceless fashion. As a traceable model protein, the enhanced green fluorescent protein (eGFP) bearing a nuclear localization signal was covalently coupled with a pH-labile traceless azidomethyl-methylmaleic anhydride (AzMMMan) linker followed by functionalization with different molar equivalents of two dibenzocyclooctyne-octa-arginine-cysteine (DBCO-R8C)-modified moieties: polyethylene glycol (PEG)-GE11 peptide for epidermal growth factor receptor-mediated targeting and melittin for endosomal escape. The cationic melittin domain was masked with tetrahydrophthalic anhydride revertible at mild acidic pH 6.5. At the optimally balanced ratio of functional units, the on-demand charge conversion at tumoral extracellular pH 6.5 in combination with GE11-mediated targeting triggered enhanced electrostatic cellular attraction by the R8C cell-penetrating peptides and melittin, as demonstrated by strongly enhanced cellular uptake. Successful endosomal release followed by nuclear localization of the eGFP cargo was obtained by taking advantage of melittin-mediated endosomal escape and rapid traceless release from the AzMMMan linker. The effectiveness of this multifunctional bioresponsive system suggests a promising strategy for delivery of protein drugs toward intracellular targets. A possible therapeutic relevance was indicated by an example of cytosolic delivery of cytochrome c initiating the apoptosis pathway to kill cancer cells.
Original languageEnglish
Pages (from-to)99-114
Number of pages16
JournalACS Biomaterials Science & Engineering
Volume10
Issue number1
Early online date8 Jul 2022
DOIs
Publication statusPublished - 8 Jan 2024

Austrian Fields of Science 2012

  • 301209 Pharmacy
  • 301213 Drug targeting

Keywords

  • &nbsp
  • protein delivery
  • pH -sensitive
  • charge reversal
  • receptor targeting
  • traceless release
  • endosomal escape
  • CELL-PENETRATING PEPTIDES
  • GROWTH-FACTOR RECEPTOR
  • ARGININE-RICH PEPTIDES
  • IN-VITRO
  • GENE DELIVERY
  • ENDOSOMAL PH
  • RESPONSIVE POLYMERS
  • DRUG-DELIVERY
  • LIVE CELLS
  • FOLIC-ACID
  • pH-sensitive

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