Pharmaceutics (Apr 2023)

Poly(<span style="font-variant: small-caps">l</span>-Ornithine)-Based Polymeric Micelles as pH-Responsive Macromolecular Anticancer Agents

  • Miao Pan,
  • Chao Lu,
  • Wancong Zhang,
  • Huan Huang,
  • Xingyu Shi,
  • Shijie Tang,
  • Daojun Liu

DOI
https://doi.org/10.3390/pharmaceutics15041307
Journal volume & issue
Vol. 15, no. 4
p. 1307

Abstract

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Anticancer peptides and polymers represent an emerging field of tumor treatment and can physically interact with tumor cells to address the problem of multidrug resistance. In the present study, poly(l-ornithine)-b-poly(l-phenylalanine) (PLO-b-PLF) block copolypeptides were prepared and evaluated as macromolecular anticancer agents. Amphiphilic PLO-b-PLF self-assembles into nanosized polymeric micelles in aqueous solution. Cationic PLO-b-PLF micelles interact steadily with the negatively charged surfaces of cancer cells via electrostatic interactions and kill the cancer cells via membrane lysis. To alleviate the cytotoxicity of PLO-b-PLF, 1,2-dicarboxylic-cyclohexene anhydride (DCA) was anchored to the side chains of PLO via an acid-labile β-amide bond to fabricate PLO(DCA)-b-PLF. Anionic PLO(DCA)-b-PLF showed negligible hemolysis and cytotoxicity under neutral physiological conditions but recovered cytotoxicity (anticancer activity) upon charge reversal in the weakly acidic microenvironment of the tumor. PLO-based polypeptides might have potential applications in the emerging field of drug-free tumor treatment.

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