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Assessing Biofilm Dispersal in Murine Wounds
Published on: August 7, 2021
HOCl-producing Electrochemical Bandage is Active in Murine Polymicrobial Wound Infection
Derek Fleming1, Ibrahim Bozyel2, Christina A Koscianski1
1Division of Clinical Microbiology, Mayo Clinic, Rochester, MN.
Abstract:
Wound infections, exacerbated by the prevalence of antibiotic-resistant bacterial pathogens, necessitate innovative antimicrobial approaches. Polymicrobial infections, often involving Pseudomonas aeruginosa and methicillin-resistant Staphylococcus aureus (MRSA), present formidable challenges due to biofilm formation and antibiotic resistance. Hypochlorous acid (HOCl), a potent antimicrobial agent produced naturally by the immune system, holds promise as an alternative therapy. An electrochemical bandage (e-bandage) that generates HOCl in situ was evaluated for treatment of murine wound biofilm infections containing both MRSA and P. aeruginosa with "difficult-to-treat" resistance. Previously, the HOCl-producing e-bandage was shown to reduce wound biofilms containing P. aeruginosa alone. Compared to non-polarized e-bandage (no HOCl production) and Tegaderm only controls, the polarized e-bandages reduced bacterial loads in wounds infected with MRSA plus P. aeruginosa (MRSA: vs Tegaderm only - 1.4 log10 CFU/g, p = 0.0015, vs. non-polarized - 1.1 log10 CFU/g, p = 0.026. P. aeruginosa: vs Tegaderm only - 1.6 log10 CFU/g, p = 0.0015, vs non-polarized - 1.6 log10 CFU/g, p = 0.0032), and MRSA alone (vs Tegaderm only - 1.3 log10 CFU/g, p = 0.0048, vs. non-polarized - 1.1 log10 CFU/g, p = 0.0048), without compromising wound healing or causing tissue toxicity. Addition of systemic antibiotics did not enhance the antimicrobial efficacy of e-bandages, highlighting their potential as standalone therapies. This study provides additional evidence for the HOCl-producing e-bandage as a novel antimicrobial strategy for managing wound infections, including in the context of antibiotic resistance and polymicrobial infections.
Insights
An electrochemical bandage generating hypochlorous acid (HOCl) effectively treated difficult-to-treat wound infections caused by antibiotic-resistant bacteria, including MRSA and P. aeruginosa. This innovative antimicrobial approach showed significant bacterial load reduction without harming wound healing.
Area of Science:
- Biomedical Engineering
- Infectious Diseases
- Materials Science
Background:
- Wound infections caused by antibiotic-resistant pathogens like MRSA and P. aeruginosa are a growing global health concern.
- Polymicrobial infections and biofilms present significant challenges for conventional antimicrobial therapies.
- Hypochlorous acid (HOCl) is a potent antimicrobial agent with potential for novel therapeutic applications.
Approach:
- An electrochemical bandage (e-bandage) was developed to generate HOCl *in situ* for wound treatment.
- The e-bandage's efficacy was evaluated in murine models of polymicrobial wound infections involving MRSA and P. aeruginosa.
- Bacterial loads, wound healing, and tissue toxicity were assessed and compared to control groups.
Key Points:
- The HOCl-producing e-bandage significantly reduced bacterial loads of MRSA and P. aeruginosa in polymicrobial infections.
- The e-bandage demonstrated efficacy against MRSA and P. aeruginosa when present individually in wound infections.
- Antimicrobial efficacy was achieved without compromising wound healing or causing observable tissue toxicity.
- Systemic antibiotics did not improve the e-bandage's effectiveness, suggesting its potential as a standalone therapy.
Conclusions:
- The HOCl-generating e-bandage represents a promising novel antimicrobial strategy for managing complex wound infections.
- This technology offers a potential solution for infections involving antibiotic-resistant bacteria and polymicrobial communities.
- Further research supports the e-bandage as an effective alternative or adjunct therapy in combating antimicrobial resistance in wound care.

