Back to Search Start Over

iN/i-Terminal Lysozyme Conjugation to a Cationic Polymer Enhances Antimicrobial Activity and Overcomes Antimicrobial Resistance

Authors :
Tong Zhang
Wei An
Jiawei Sun
Fei Duan
Zeyu Shao
Fan Zhang
Ting Jiang
Xuliang Deng
Cyrille Boyer
Weiping Gao
Source :
Nano letters. 22(20)
Publication Year :
2022

Abstract

Microbial resistance to antibiotics is one of the greatest global healthcare challenges. There is an urgent need to develop effective strategies to overcome antimicrobial resistance. We, herein, report photoinduced in situ growth of a cationic polymer from theiN/i-terminus of lysozyme. The attachment of the cationic polymer improves the proteolytic and thermal stability of lysozyme. Notably, the conjugate can efficiently overcome lysozyme resistance in Gram-positive bacteria and antibiotics-resistance in Gram-negative bacteria, which may be ascribed to the synergistic interactions of lysozyme and the cationic polymer with the bacteria to disrupt their cell membranes. In a rat periodontitis model, the lysozyme-polymer conjugate not only greatly outperforms lysozyme in therapeutic efficacy but also is superior to minocycline hydrochloride, which is the gold standard for periodontitis therapy. These findings may provide an efficient strategy to dramatically enhance the antimicrobial activities of lysozyme and pave a way to overcome antimicrobial resistance.

Details

ISSN :
15306992
Volume :
22
Issue :
20
Database :
OpenAIRE
Journal :
Nano letters
Accession number :
edsair.doi.dedup.....3d590159f352997395eccfd4f1e6aefe