Fluorination of Polyethylenimines for Augmentation of Antibacterial Potency via Structural Damage and Potential Dissipation of Bacterial Membranes.

ACS Appl Mater Interfaces

State Key Laboratory of Chemical Resource Engineering, Key Lab of Biomedical Materials of Natural Macromolecules (Beijing University of Chemical Technology, Ministry of Education), Beijing Laboratory of Biomedical Materials, Beijing 100029, P.R. China.

Published: October 2022

The rise of drug-resistant bacteria (e.g., methicillin-resistant , MRSA) has continued, making the ″super-bugs″ a formidable threat to global health. Herein, we synthesize a series of fluoroalkylated polyethylenimines (PEI-F) with different grafting degrees of fluoroalkyls via a simple ring-opening reaction and demonstrate for the first time that fluoroalkylated PEIs are able to exert potent antibacterial activity to () and (). Among the fluoroalkylated polymers, PEI-F shows the strongest antibacterial activity, with a minimum inhibitory concentration (MIC) of 64 μg mL, against both and . More importantly, we find that PEI-F is able to kill over 99.8% of within 1 min, which is extremely desirable for the treatment of acute and severe bacterial infections that require quick disinfection. We also demonstrate that the fluoroalkylated PEIs are able to kill bacteria via structural damage of the outer membrane (OM) and cytoplasmic membrane (CM), potential dissipation of CM, and generation of intracellular reactive oxygen species (ROS). The antibacterial test suggests that commercial Vaseline blended with 6.25 wt % of PEI-F (VL/PEI-F) is able to efficaciously eradicate MRSA infection on a bacterial infected wound model and promote the healing procedure of the wound site. Therefore, the fluoroalkylated PEIs provide a promising strategy to cope with the major challenges of drug-resistant infections.

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http://dx.doi.org/10.1021/acsami.2c12692DOI Listing

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