Preventive effects of NSAIDs, NO-NSAIDs, and NSAIDs plus difluoromethylornithine in a chemically induced urinary
Holly L Nicastro1, Clinton J Grubbs, M Margaret Juliana
1Chemopreventive Agent Development Research Group, Division of Cancer Prevention, National Cancer Institute, Bethesda, MD 20852. lubetr@mail.nih.gov.
Abstract:
Urinary bladder cancer prevention studies were performed with the nonsteroidal anti-inflammatory drugs (NSAID) naproxen (a standard NSAID with a good cardiovascular profile), sulindac, and their nitric oxide (NO) derivatives. In addition, the effects of the ornithine decarboxylase inhibitor, difluoromethylornithine (DFMO), alone or combined with a suboptimal dose of naproxen or sulindac was examined. Agents were evaluated at their human equivalent doses (HED), as well as at lower doses. In the hydroxybutyl(butyl)nitrosamine (OH-BBN) model of urinary bladder cancer, naproxen (400 or 75 ppm) and sulindac (400 ppm) reduced the incidence of large bladder cancers by 82%, 68%, and 44%, respectively, when the agents were initially given 3 months after the final dose of the carcinogen; microscopic cancers already existed. NO-naproxen was highly effective, whereas NO-sulindac was inactive. To further compare naproxen and NO-naproxen, we examined their effects on gene expression in rat livers following a 7-day exposure. Limited, but similar, gene expression changes in the liver were induced by both agents, implying that the primary effects of both are mediated by the parent NSAID. When agents were initiated 2 weeks after the last administration of OH-BBN, DFMO at 1,000 ppm had limited activity, a low dose of naproxen (75 ppm) and sulindac (150 ppm) were highly and marginally effective. Combining DFMO with suboptimal doses of naproxen had minimal effects, whereas the combination of DMFO and sulindac was more active than either agent alone. Thus, naproxen and NO-naproxen were highly effective, whereas sulindac was moderately effective in the OH-BBN model at their HEDs.
Insights
Naproxen, NO-naproxen, and sulindac show promise in preventing urinary bladder cancer in a rat model. These nonsteroidal anti-inflammatory drugs (NSAIDs) demonstrated effectiveness, with naproxen and its nitric oxide derivative being particularly potent.
Area of Science:
- Oncology
- Pharmacology
- Cancer Prevention
Background:
- Urinary bladder cancer remains a significant health concern.
- Nonsteroidal anti-inflammatory drugs (NSAIDs) and ornithine decarboxylase inhibitors are explored for cancer chemoprevention.
- Nitric oxide (NO) derivatives of NSAIDs offer potential therapeutic advantages.
Purpose of the Study:
- To evaluate the efficacy of naproxen, sulindac, and their NO-derivatives in preventing urinary bladder cancer.
- To investigate the combined effects of difluoromethylornithine (DFMO) with NSAIDs.
- To compare the effects of these agents at human equivalent doses (HED) and lower doses.
Main Methods:
- Utilized the hydroxybutyl(butyl)nitrosamine (OH-BBN) induced rat model of urinary bladder cancer.
- Administered NSAIDs, NO-NSAIDs, and DFMO at various doses, both individually and in combination.
- Initiated treatment at different time points relative to carcinogen exposure.
Main Results:
- Naproxen (400 or 75 ppm) and sulindac (400 ppm) significantly reduced large bladder cancer incidence.
- NO-naproxen demonstrated high efficacy, while NO-sulindac was inactive.
- Combination of DFMO and sulindac showed greater activity than either agent alone.
Conclusions:
- Naproxen and NO-naproxen are highly effective in preventing urinary bladder cancer in the OH-BBN model.
- Sulindac exhibits moderate effectiveness.
- The parent NSAID appears to mediate the primary effects of NO-NSAIDs.
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