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Efficient Photolysis of Multidrug-Resistant Polymicrobial Biofilms. | LitMetric

Efficient Photolysis of Multidrug-Resistant Polymicrobial Biofilms.

Adv Sci (Weinh)

Wellman Center for Photomedicine, Massachusetts General Hospital, Department of Dermatology, Harvard Medical School, 50 Blossom Street, Boston, MA, 02114, USA.

Published: December 2024

AI Article Synopsis

  • Chronic wounds often develop infections from tough, multidrug-resistant bacteria that form biofilms, making them hard to treat with current methods.
  • A new study investigates a non-antibiotic therapy using blue light and ferric ions to break down these biofilms and enhance the effectiveness of other treatments.
  • Results in diabetic mice showed that this approach significantly reduced bacterial presence and improved wound healing, offering a safe, easy-to-use option for chronic wound management, especially in areas with limited medical resources.

Article Abstract

Chronic wounds are prone to infections with multidrug-resistant bacteria, forming polymicrobial biofilms that limit treatment options and increase the risk of severe complications. Current cleansing options are insufficient to disrupt and remove tenacious biofilms; antibiotic treatments, on the other hand, often fall short against these biofilm-embedded bacteria. This study explores an non-antibiotic approach that extends beyond conventional porphyrin-based phototherapy by using blue light (BL) in conjunction with ferric ions (Fe(III)) to disrupt and eradicate biofilms. The dual not only degraded biofilm extracellular polymeric substances (EPS) in mono-species and polymicrobial biofilms by specifically targeting carboxyl-containing polysaccharides within the matrix but also exhibited broad-spectrum antimicrobial activity by affecting key components of the outer membrane and cell wall. Bacteria, such as K. pneumoniae, with compromised EPS after photolysis, demonstrated increased susceptibility to macrophage phagocytosis. Disruption of the polymicrobial biofilm structure also enhanced the bacterial susceptibility to bactericidal drugs. Treating wounds infected by mixed-species biofilm in diabetic mice demonstrated a substantial reduction in bacterial colonization and improved tissue repair. The BL-Fe(III) modality offers a safe, efficient alternative for managing chronic wound infections, making it ideal for repeated, non-invasive use at home, especially in resource-limited areas.

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Source
http://dx.doi.org/10.1002/advs.202407898DOI Listing

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