Abstract
Antibiotic abuse causes the emergence of bacterial resistance. Photodynamic antibacterial chemotherapy (PACT) has great potential to solve serious bacterial resistance, but it suffers from the inefficient generation of ROS and the lack of bacterial targeting ability. Herein, a unique cationic photosensitizer (NB) and bacteriophage (ABP)-based photodynamic antimicrobial agent (APNB) is developed for precise bacterial eradication and efficient biofilm ablation. Thanks to the structural modification of the NB photosensitizer with a sulfur atom, it displays excellent reactive oxygen species (ROS)-production ability. Moreover, specific binding to pathogenic microorganisms can be provided by bacteriophages. The developed APNB has multiple functions, including bacteria targeting, near-infrared fluorescence imaging and combination therapy (PACT and phage therapy). Bothin vitroandin vivoexperiments prove that APNB can efficiently treatA. baumanniiinfection. Particularly, the recovery fromA. baumanniiinfection after APNB treatment is faster than that with ampicillin and polymyxin Bin vivo. Furthermore, the strategy of combining bacteriophages and photosensitizers is employed to eradicate bacterial biofilms for the first time, and it shows the excellent biofilm ablation effect as expected. Thus, APNB has huge potential in fighting against multidrug-resistant bacteria and biofilm ablation in practice.
Cite
CITATION STYLE
Ran, B., Yuan, Y., Xia, W., Li, M., Yao, Q., Wang, Z., … Peng, X. (2021). A photo-sensitizable phage for multidrug-resistantAcinetobacter baumanniitherapy and biofilm ablation. Chemical Science, 12(3), 1054–1061. https://doi.org/10.1039/d0sc04889e
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.