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Updated: Feb 24, 2026

Anti-virulent Disruption of Pathogenic Biofilms using Engineered Quorum-quenching Lactonases
Published on: January 1, 2016
Nanowire-Mediated Eradication of Polymicrobial Biofilms
Xiaojing Ma1, Clara Marlowe1,2, Wenjing Tang1
1Robert F. Smith School of Chemical and Biomolecular Engineering Cornell University Olin Hall, Ithaca, New York 14850, United States.
A novel nanozyme, vanadium pentoxide nanowires, converts bacterial H2O2 into an antiseptic to eradicate polymicrobial biofilms causing otitis media. This approach shows potential for treating biofilm infections and reducing antibiotic resistance.
Area of Science:
- Biotechnology
- Nanomedicine
- Antimicrobial Research
Background:
- * *Streptococcus pneumoniae* (S. pneumoniae) and Nontypeable *Hemophilus influenzae* (NTHi) are key pathogens in otitis media (OM).
- * These bacteria form antibiotic-resistant biofilms, leading to chronic or recurrent OM and necessitating prolonged antibiotic treatment.
- * Current antibiotic regimens are often insufficient to eradicate these polymicrobial biofilms.
Purpose of the Study:
- * To develop a novel strategy for eradicating polymicrobial biofilms associated with otitis media.
- * To investigate the efficacy of vanadium pentoxide nanowires (V2O5 NWs) as a nanozyme in treating S. pneumoniae and NTHi biofilms.
- * To evaluate the synergistic effects of V2O5 NWs with conventional antibiotics.
Main Methods:
- * Utilized vanadium pentoxide nanowires (V2O5 NWs) to catalyze H2O2 into hypobromous acid (HOBr).
- * Tested the nanozyme's efficacy against polymicrobial biofilms of S. pneumoniae and NTHi.
- * Employed isobologram analysis to assess synergistic, additive, or antagonistic effects with antibiotics like ciprofloxacin and moxifloxacin.
Main Results:
- * V2O5 NWs successfully eradicated polymicrobial biofilms by converting S. pneumoniae's metabolic H2O2 into HOBr.
- * V2O5 NWs demonstrated synergistic effects with ciprofloxacin and moxifloxacin against monocultured pathogens.
- * Additive effects were observed against S. pneumoniae in mono- and cocultures, except for levofloxacin-ciprofloxacin showing antagonism in cocultures.
Conclusions:
- * Nanozyme-based therapy using V2O5 NWs offers a promising approach to combat polymicrobial otitis media biofilms.
- * This strategy can potentially address antimicrobial resistance associated with biofilm infections.
- * The findings suggest a method to reduce overall antibiotic exposure in treating OM.
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