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Amifostine: is there evidence of tumor protection?
1Department of Radiotherapy-Oncology, Democritus University of Thrace, Alexandroupolis, Greece.
Abstract:
A large body of experimental evidence suggests that amifostine (Ethyol, WR-2721; MedImmune, Inc, Gaithersburg, MD) is a selective cytoprotector of normal tissues. Nevertheless, several experimental studies, most of which were conducted in the early 1980s, suggest that amifostine may protect tumor tissues, although to a much lower degree than its protective effect on normal tissues. Based on a critical literature review, we conclude that any experimental evidence suggesting tumor protection is weak. The effects of anesthesia and hypotension on normal and tumor tissue oxygenation status of animals, the consequences of such events on amifostine activity, and the impact of this complex situation on host immunity and radiotherapy efficacy in the experimental setting do not reliably simulate the clinical setting. Analyses of radiobiologic and histologic results of the Canine Sarcoma Study show that, if any conclusion is to be made, amifostine protected normal tissues and preserved (or even enhanced) the antitumor activity of radiotherapy. The Ormaplatin Study clearly showed a 10-fold decreased concentration of platinum in tumor compared with normal tissues, and does not therefore support evidence of lack of amifostine selectivity. Finally, not one clinical study suggests tumor protection with amifostine. On the contrary, the majority of clinical data strongly suggest that patients who receive amifostine with radiotherapy and/or chemotherapy do better than controls. Rather than organizing large-scale, randomized clinical trials to exclude tumor protection by amifostine, it seems more useful to design trials that would measure amifostine benefits in terms of improved quality of life, tumor control, and survival rates in patients being treated with standard or novel chemotherapy/radiotherapy regimens.
Insights
Amifostine selectively protects normal tissues during cancer treatment. Evidence for tumor protection is weak, and clinical data suggest amifostine improves patient outcomes when used with radiotherapy or chemotherapy.
Area of Science:
- Oncology
- Radiotherapy
- Pharmacology
Background:
- Amifostine is recognized as a selective cytoprotector for normal tissues.
- Some early studies suggested potential tumor protection by amifostine, but this evidence is debated.
- Experimental conditions may not accurately reflect clinical scenarios regarding amifostine's effects.
Purpose of the Study:
- To critically evaluate the evidence for amifostine's tumor-protective effects.
- To assess amifostine's impact on normal tissue and tumor response in clinical and experimental settings.
- To determine the clinical relevance of amifostine's selectivity.
Main Methods:
- Critical review of existing experimental and clinical literature on amifostine.
- Analysis of radiobiologic and histologic data from the Canine Sarcoma Study.
- Examination of pharmacokinetic data from the Ormaplatin Study.
- Synthesis of clinical trial results involving amifostine with radiotherapy and/or chemotherapy.
Main Results:
- Experimental evidence suggesting amifostine protects tumor tissues is weak and inconclusive.
- The Canine Sarcoma Study indicated amifostine protected normal tissues and enhanced radiotherapy's antitumor activity.
- The Ormaplatin Study showed lower platinum concentrations in tumors, supporting amifostine's selectivity.
- No clinical studies indicate amifostine protects tumors; most suggest improved patient outcomes.
Conclusions:
- Amifostine's selectivity for normal tissues is supported by robust evidence.
- Clinical data consistently show amifostine benefits patients receiving cancer therapies.
- Future trials should focus on quantifying amifostine's benefits on quality of life, tumor control, and survival.
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