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Docosahexaenoic acid in combination with celecoxib modulates HSP70 and p53 proteins in prostate cancer cells
Narayanan K Narayanan1, Bhagavathi A Narayanan, Maarten Bosland
1Department of Environmental Medicine, New York University School of Medicine, Tuxedo, NY 10987, USA. nnarayan@env.med.nyu.edu
Abstract:
The role of cyclooxygenase-2 (COX-2) and the mechanism by which it influences the development and behavior of prostate cancer is unclear. Selective COX-2 inhibitors may be effective against prostate cancer via COX-2-independent mechanisms. But administration of high doses of COX-2 inhibitors over longer period of time may not be devoid of side effects. There is increasing interest in using COX-2 inhibitors in combination with other chemopreventive agents to overcome the issue of toxicity. However, the molecular mechanisms underlying their combined actions are not well understood. Therefore, the present study was designed to determine the effects of low doses of docosahexaenoic acid (DHA) in combination with celecoxib on the molecular targets at the proteins level in rat prostate cancer cells. Two-dimensional gel electrophoresis, in combination with mass spectrometry analysis, was used for protein identification. Western blot analysis confirmed the proteins identified. Paraffin-embedded tissue sections from the rat prostate tumor were used to detect base level expression of heat shock protein 70 (HSP70) and p53. The rate of cancer cell growth was inhibited more effectively (p < 0.01) by DHA in combination with celecoxib at lower doses (2.5 microM each). A total number of twelve proteins were differentially expressed by the combined action of DHA and celecoxib at low doses. It was interesting to note that these agents activated both HSP70 and p53 proteins. Activation of HSP70 by the combined actions of DHA and celecoxib in the presence of wild-type p53 reveals a unique COX-2 independent mode of action against prostate cancer.
Insights
Low doses of docosahexaenoic acid (DHA) combined with celecoxib effectively inhibit prostate cancer cell growth. This combination activates heat shock protein 70 (HSP70) and p53, suggesting a unique cyclooxygenase-2 (COX-2) independent mechanism.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The role of cyclooxygenase-2 (COX-2) in prostate cancer development is not fully understood.
- Selective COX-2 inhibitors show potential but may have side effects at high doses or prolonged use.
- Combining COX-2 inhibitors with other agents is of interest to mitigate toxicity, but mechanisms are unclear.
Purpose of the Study:
- To investigate the effects of low-dose docosahexaenoic acid (DHA) and celecoxib combination on molecular targets in rat prostate cancer cells.
- To identify protein-level changes induced by the combined treatment.
- To explore potential COX-2 independent mechanisms of action.
Main Methods:
- Utilized two-dimensional gel electrophoresis and mass spectrometry for protein identification.
- Confirmed protein expression using Western blot analysis.
- Analyzed heat shock protein 70 (HSP70) and p53 expression in rat prostate tumor tissues.
Main Results:
- Combined low doses of DHA and celecoxib (2.5 microM each) significantly inhibited cancer cell growth (p < 0.01).
- Twelve proteins were differentially expressed under the combined treatment.
- Both HSP70 and p53 proteins were activated by the combination therapy.
Conclusions:
- Low-dose DHA and celecoxib combination offers a potent strategy against prostate cancer.
- The observed activation of HSP70 and p53 suggests a novel COX-2 independent mechanism.
- This combination therapy may provide an effective and potentially safer approach for prostate cancer chemoprevention.

