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Published on: February 28, 2025
Chelating the valley of death: Deferoxamine's path from bench to wound clinic
Jennifer B Parker1,2, Michelle F Griffin1, Mauricio A Downer1
1Division of Plastic and Reconstructive Surgery, Department of Surgery, Stanford University School of Medicine, Stanford, CA, United States.
Abstract:
There is undisputable benefit in translating basic science research concretely into clinical practice, and yet, the vast majority of therapies and treatments fail to achieve approval. The rift between basic research and approved treatment continues to grow, and in cases where a drug is granted approval, the average time from initiation of human trials to regulatory marketing authorization spans almost a decade. Albeit with these hurdles, recent research with deferoxamine (DFO) bodes significant promise as a potential treatment for chronic, radiation-induced soft tissue injury. DFO was originally approved by the Food and Drug Administration (FDA) in 1968 for the treatment of iron overload. However, investigators more recently have posited that its angiogenic and antioxidant properties could be beneficial in treating the hypovascular and reactive-oxygen species-rich tissues seen in chronic wounds and radiation-induced fibrosis (RIF). Small animal experiments of various chronic wound and RIF models confirmed that treatment with DFO improved blood flow and collagen ultrastructure. With a well-established safety profile, and now a strong foundation of basic scientific research that supports its potential use in chronic wounds and RIF, we believe that the next steps required for DFO to achieve FDA marketing approval will include large animal studies and, if those prove successful, human clinical trials. Though these milestones remain, the extensive research thus far leaves hope for DFO to bridge the gap between bench and wound clinic in the near future.
Insights
Deferoxamine (DFO) shows promise for treating radiation-induced fibrosis and chronic wounds due to its angiogenic and antioxidant effects. Further studies are needed to advance DFO towards clinical approval for these conditions.
Area of Science:
- Biomedical research
- Translational medicine
- Wound healing
Background:
- Translating basic science research into clinical practice faces significant hurdles, with many therapies failing to gain approval.
- The development timeline from human trials to regulatory authorization is lengthy, often spanning nearly a decade.
Purpose of the Study:
- To evaluate the potential of deferoxamine (DFO) as a treatment for chronic, radiation-induced soft tissue injury.
- To explore the angiogenic and antioxidant properties of DFO for wound healing applications.
Main Methods:
- Review of existing research on deferoxamine (DFO).
- Analysis of small animal models for chronic wounds and radiation-induced fibrosis (RIF).
Main Results:
- Deferoxamine (DFO) treatment improved blood flow and collagen ultrastructure in small animal models of chronic wounds and RIF.
- DFO has a well-established safety profile from its original FDA approval for iron overload.
Conclusions:
- Basic scientific research supports DFO's potential for treating chronic wounds and RIF.
- Next steps for DFO include large animal studies and human clinical trials to pursue FDA marketing approval for these indications.

