Antimicrobial Activity and Cell Selectivity of Synthetic and Biosynthetic Cationic Polymers

作者:Venkatesh Mayandi; Barathi Veluchamy Amutha; Goh Eunice Tze Leng; Anggara Raditya; Fazil Mobashar Hussain Urf Turabe; Ng Alice Jie Ying; Harini Sriram; Aung Thet Tun; Fox Stephen John; Liu Shouping; Yang Liang; Barkham Timothy Mark Sebastian; Loh Xian Jun; Verma Navin Kumar*; Beuerman Roger W*; Lakshminarayanan Rajamani*
来源:Antimicrobial Agents and Chemotherapy, 2017, 61(10): e00469-17.
DOI:10.1128/AAC.00469-17

摘要

The mammalian and microbial cell selectivity of synthetic and biosynthetic cationic polymers has been investigated. Among the polymers with peptide backbones, polymers containing amino side chains display greater antimicrobial activity than those with guanidine side chains, whereas ethylenimines display superior activity over allylamines. The biosynthetic polymer c-polylysine (epsilon PL) is noncytotoxic to primary human dermal fibroblasts at concentrations of up to 2,000 mu g/ml, suggesting that the presence of an isopeptide backbone has greater cell selectivity than the presence of a-peptide backbones. Both epsilon PL and linear polyethylenimine (LPEI) exhibit bactericidal properties by depolarizing the cytoplasmic membrane and disrupt preformed biofilms. epsilon PL displays broad-spectrum antimicrobial properties against antibiotic-resistant Gram-negative and Gram-positive strains and fungi. epsilon PL elicits rapid bactericidal activity against both Gram-negative and Gram-positive bacteria, and its biocompatibility index is superior to those of cationic antiseptic agents and LPEI. epsilon PL does not interfere with the wound closure of injured rabbit corneas. In a rabbit model of bacterial keratitis, the topical application of epsilon PL (0.3%, wt/vol) decreases the bacterial burden and severity of infections caused by Pseudomonas aeruginosa and Staphylococcus aureus strains. In vivo imaging studies confirm that epsilon PL-treated corneas appeared transparent and nonedematous compared to untreated infected corneas. Taken together, our results highlight the potential of epsilon PL in resolving topical microbial infections.

  • 出版日期2017-10
  • 单位南阳理工学院