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Updated: Oct 23, 2025

Assessing Biofilm Dispersal in Murine Wounds
Published on: August 7, 2021
Assessing Biofilm Dispersal in Murine Wounds
Whitni K Redman1, Garrett S Welch2, Kendra P Rumbaugh3
1Department of Surgery, Texas Tech University Health Sciences Center; Immunology and Molecular Microbiology, Texas Tech University Health Sciences Center.
Abstract:
Biofilm-related infections are implicated in a wide array of chronic conditions such as non-healing diabetic foot ulcers, chronic sinusitis, reoccurring otitis media, and many more. Microbial cells within these infections are protected by an extracellular polymeric substance (EPS), which can prevent antibiotics and host immune cells from clearing the infection. To overcome this obstacle, investigators have begun developing dispersal agents as potential therapeutics. These agents target various components within the biofilm EPS, weakening the structure, and initiating dispersal of the bacteria, which can theoretically improve antibiotic potency and immune clearance. To determine the efficacy of dispersal agents for wound infections, we have developed protocols that measure biofilm dispersal both ex vivo and in vivo. We use a mouse surgical excision model that has been well-described to create biofilm-associated chronic wound infections. To monitor dispersal in vivo, we infect the wounds with bacterial strains that express luciferase. Once mature infections have established, we irrigate the wounds with a solution containing enzymes that degrade components of the biofilm EPS. We then monitor the location and intensity of the luminescent signal in the wound and filtering organs to provide information about the level of dispersal achieved. For ex vivo analysis of biofilm dispersal, infected wound tissue is submerged in biofilm-degrading enzyme solution, after which the bacterial load remaining in the tissue, versus the bacterial load in solution, is assessed. Both protocols have strengths and weaknesses and can be optimized to help accurately determine the efficacy of dispersal treatments.
Insights
Biofilm dispersal agents show promise for treating chronic wound infections. These agents break down protective biofilm structures, enhancing antibiotic effectiveness and immune response for better infection clearance.
Area of Science:
- Microbiology
- Infectious Diseases
- Biotechnology
Background:
- Biofilm-related infections are a major challenge in chronic conditions like diabetic foot ulcers.
- The extracellular polymeric substance (EPS) in biofilms protects microbes from antibiotics and immune cells.
- Dispersal agents are emerging therapeutics targeting biofilm EPS to weaken structure and initiate bacterial dispersal.
Purpose of the Study:
- To develop and validate protocols for measuring biofilm dispersal efficacy in wound infections.
- To assess the potential of dispersal agents as therapeutics for chronic wound infections.
Main Methods:
- Utilized a mouse surgical excision model for biofilm-associated chronic wound infections.
- Developed in vivo monitoring using luciferase-expressing bacteria to track dispersal via luminescence.
- Established ex vivo analysis by assessing bacterial load in tissue versus solution after enzyme treatment.
Main Results:
- Protocols were established to measure biofilm dispersal both ex vivo and in vivo.
- In vivo monitoring tracks dispersal by assessing luminescence in wounds and filtering organs.
- Ex vivo analysis quantifies bacterial dispersal by comparing tissue-bound vs. solution-borne bacteria.
Conclusions:
- Developed robust ex vivo and in vivo methods to evaluate biofilm dispersal agents.
- These protocols provide a framework for optimizing dispersal treatments for chronic wound infections.
- Further optimization of these methods is crucial for accurately determining dispersal agent efficacy.

