| Literature DB >> 30264837 |
Dong Yu Zhu1, Ryan F Landis, Cheng-Hsuan Li, Akash Gupta, Li-Sheng Wang, Yingying Geng, Sanjana Gopalakrishnan, Jian Wei Guo, Vincent M Rotello.
Abstract
Multidrug-resistant biofilms are highly resistant to current antimicrobial therapies. We have developed an antimicrobial platform that integrates the bacteria-killing phytochemical carvacrol into dynamically crosslinked polymer nanocomposites (DCPNs). Taking advantage of a reversibly crosslinked Schiff-base scaffold throughout the engineered emulsions, DCPNs exhibited long-term shelf-life and good stability in serum, while readily disassembling in acidic microenvironments. Furthermore, we demonstrated that DCPNs efficiently penetrate the biofilm matrix, eradicating both Gram-negative/positive bacteria enclosed within. Moreover, DCPNs showed no observable toxicity to fibroblast mammalian cells with the same antimicrobial concentrations necessary to eradicate MDR biofilms. Given their potent antimicrobial and stimuli-responsive dissociation characteristics in a biofilm setting, DCPNs are a suitable therapeutic platform for combating MDR bacterial infections.Entities:
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Year: 2018 PMID: 30264837 PMCID: PMC6190609 DOI: 10.1039/c8nr06348f
Source DB: PubMed Journal: Nanoscale ISSN: 2040-3364 Impact factor: 7.790