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March 29, 2026Advanced Healthcare Materials2 citationsOpen Access

Airborne 1 O 2 Delivery via a Superhydrophobic Dressing as a Pathway to Next‐Generation Wound Therapies, an in Vivo Murine Burn Model Study

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FCFernanda viana cabralHarvard UniversityQXQianFeng XuArk Therapeutic (United States)NENatalie Kay EidenschinkHarvard University

Key Points

  • This research aims to examine the efficacy of airborne singlet oxygen delivered via superhydrophobic bandages for wound healing.
  • Utilized a light-activated antimicrobial photodynamic therapy (aPDT) approach.
  • Implemented in vivo murine model with third-degree burns infected by MRSA or Pseudomonas aeruginosa.
  • Applied a single treatment of superhydrophobic-aPDT and assessed outcomes such as bacterial load and wound healing.
  • Significantly reduced bacterial burden post-treatment.
  • Accelerated wound closure observed after a single application.
  • Enhanced collagen deposition and angiogenesis noted in treated wounds.

Abstract

Antimicrobial photodynamic therapy (aPDT) has been investigated as a promising therapy for treating wound infections. However, its clinical application is limited by tissue hypoxia, poor photosensitizer (PS) penetration, and off-target toxicity. In this work, we use a light-activated, contactless aPDT system that delivers airborne singlet oxygen (1O2) via a compliant, transparent superhydrophobic (SH) bandage. The verteporfin-coated SH membrane generates 1O2 while minimizing direct contact between PS and wound tissue. In a murine third-degree burn model infected with methicillin-resistant Staphylococcus aureus (MRSA) or Pseudomonas aeruginosa, a single SH-aPDT treatment significantly reduces bacterial burden and accelerates wound closure. It enhances collagen deposition, stimulates angiogenesis, increases α-SMA+ myofibroblast activity, and decreases COX-2 expression, indicating attenuated inflammatory signaling. Administration of two treatments 24 h apart further augments bacterial clearance and improves healing outcomes. SH-aPDT also promotes a pro-regenerative immune response, as evidenced by increased M2 macrophages. These findings demonstrate that airborne 1O2 delivery through SH bandages is a promising approach for the management of infected, hypoxic, or antibiotic-resistant wounds, with great potential for clinical translation in wound care.

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Cite This Study

cabral et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2d1de0f0f753b39d398https://doi.org/10.1002/adhm.71083
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