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Short Guanidinium-Functionalized Poly(2-oxazoline)s Displaying Potent Therapeutic Efficacy on Drug-Resistant Fungal Infections.

Weinan JiangMin ZhouZihao CongJiayang XieWenjing ZhangSheng ChenJingcheng ZouZhemin JiNing ShaoXin ChenMaoquan LiRunhui Liu
Published in: Angewandte Chemie (International ed. in English) (2022)
New antifungals are urgently needed to combat invasive fungal infections, due to limited types of available antifungal drugs and frequently encountered side effects, as well as the quick emergence of drug-resistance. We previously developed amine-pendent poly(2-oxazoline)s (POXs) as synthetic mimics of host defense peptides (HDPs) to have antibacterial properties, but with poor antifungal activity. Hereby, we report the finding of short guanidinium-pendent POXs, inspired by cell-penetrating peptides, as synthetic mimics of HDPs to display potent antifungal activity, superior mammalian cells versus fungi selectivity, and strong therapeutic efficacy in treating local and systemic fungal infections. Moreover, the unique antifungal mechanism of fungal cell membrane penetration and organelle disruption explains the insusceptibility of POXs to antifungal resistance. The easy synthesis and structural diversity of POXs imply their potential as a class of promising antifungal agents.
Keyphrases
  • drug resistant
  • candida albicans
  • multidrug resistant
  • acinetobacter baumannii
  • cell wall
  • anti inflammatory
  • amino acid
  • cell therapy
  • risk assessment
  • human health
  • bone marrow