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March 23, 2026International Wound Journal3 citationsOpen Access

Microalgae as a Novel Therapy for Chronic Wound Healing

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SPSaskia PearlYKYu KangJCJ. Cho

Key Points

  • The aim is to evaluate microalgae as a viable therapy for chronic wound healing compared to traditional oxygen-based treatments.
  • Review of existing literature on microalgae’s properties and applications in wound healing.
  • Analysis of delivery platforms like hydrogels and microneedles used with microalgae.
  • Assessment of recent advancements in genetic engineering and 3D bioprinting techniques.
  • Microalgae effectively produce continuous oxygen, addressing hypoxia in chronic wounds.
  • Innovative delivery systems significantly enhance the healing process.
  • Microalgae-based therapies show promise in reducing inflammation and infection compared to traditional methods.

Abstract

Chronic wounds pose a substantial global health challenge, marked by persistent inflammation, infection, hypoxia, and impaired tissue regeneration. Traditional oxygen-based therapies, including hyperbaric and topical oxygen treatments, often suffer from limited efficacy, high costs, restricted accessibility, and difficulties in achieving sustained oxygen delivery. In contrast, microalgae offer a promising and sustainable alternative, owing to their biocompatibility, glucose consumption, and continuous oxygen production via photosynthesis. Innovative delivery platforms, such as hydrogels, scaffolds, sutures, microneedles, and microrobots, have demonstrated enhanced wound healing by mitigating hypoxia, reducing infection, and modulating inflammation. Recent advances in genetic engineering and 3D bioprinting further enhance the therapeutic potential of these systems. This review explores current progress in microalgae-based wound healing approaches, with a particular focus on photosynthesis-driven oxygen delivery technologies.

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Cite This Study

Pearl et al. (2026) studied this question.

synapsesocial.com/papers/69c0e016fddb9876e79c1a23https://doi.org/10.1111/iwj.70887
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