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Updated: May 8, 2026

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Chemotherapy-induced Vascular Toxicity - Real-time In vivo Imaging of Vessel Impairment
Published on: January 7, 2015
Treatment of anthracycline extravasations using dexrazoxane
D Conde-Estévez1, J Mateu-de Antonio
1Department of Pharmacy, Hospital Universitari del Mar. Parc de Salut Mar, Universitat Autònoma de Barcelona, Passeig Marítim 25-29, 08003, Barcelona, Spain, dconde@hospitaldelmar.cat.
Summary
Dexrazoxane is the only licensed treatment for anthracycline extravasation, proving effective but with alternatives like DMSO and cooling. Further research is needed to define specific situations for dexrazoxane use.
Area of Science:
- Oncology
- Pharmacology
Background:
- Extravasation of cytotoxic agents, particularly anthracyclines, represents a critical medical emergency.
- Dexrazoxane is the sole FDA-approved antidote for anthracycline extravasation, demonstrating efficacy and moderate tolerability.
Purpose of the Study:
- To review the current management strategies for anthracycline extravasations.
- To compare the efficacy and application of dexrazoxane versus alternative therapies like topical dimethyl sulfoxide (DMSO) and cooling.
Main Methods:
- Literature review and synthesis of existing clinical data on anthracycline extravasation management.
- Analysis of treatment outcomes associated with dexrazoxane, topical DMSO, and cooling therapies.
Main Results:
- Dexrazoxane is effective, especially for large-volume anthracycline extravasations or those involving central venous access devices.
- Topical DMSO combined with cooling is a commonly described, non-invasive approach, particularly for smaller extravasations.
- Both dexrazoxane and non-invasive methods show varying degrees of success, with dexrazoxane generally well-tolerated.
Conclusions:
- While dexrazoxane is a valuable therapeutic option, its definitive indications require further clarification.
- The combination of topical DMSO and cooling remains a frequently utilized and effective strategy for managing smaller anthracycline extravasations.
- Optimal treatment selection may depend on the volume of extravasated agent and the route of administration.
