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Published on: September 11, 2012
Mesalazine causes a mitotic arrest and induces caspase-dependent apoptosis in colon carcinoma cells
A Reinacher-Schick1, A Schoeneck, U Graeven
1Department of Medicine, Ruhr-University Bochum, Knappschaftskrankenhaus, Germany. wolff.schmiegel@ruhr-uni-bochum.de
Abstract:
Non-steroidal anti-inflammatory drugs (NSAID) may inhibit colon cancer development through affecting proliferation and apoptosis. However, their use in cancer chemoprevention is still limited due to toxicities. There is longstanding clinical experience with the aminosalicylate mesalazine in the treatment of patients with inflammatory bowel disease with very few side effects. So far, most studies on the cellular effects of mesalazine were focused on its anti-inflammatory properties. Recent data, however, indicate that mesalazine may also reduce cell growth in vivo. We therefore investigated the growth inhibitory effect of mesalazine on human colon cancer cells in vitro compared with established chemopreventive agents. We also wished to determine the underlying cellular mechanisms of the effect. Here we show that mesalazine dose- and time-dependently inhibited the proliferation of colon cancer cells. Mesalazine was less potent in reducing cell growth than sulindac sulfide or indomethacin but growth effective mesalazine concentrations were comparable with concentrations achievable in vivo under standard mesalazine treatment. While other NSAID induced a robust G(1) arrest, mesalazine specifically blocked cells in mitosis although microtubule polymerization or spindle orientation was not affected. In addition, mesalazine induced apoptosis in colon cancer cells possibly through activation of caspase-3 whereas the levels of bcl-2 family proteins were not altered. We conclude that mesalazine inhibits growth of colon cancer cells largely through a mitotic arrest, which has not been reported for NSAID so far. Mesalazine also induces apoptosis through partial activation of caspases similar to, although weaker than, established chemopreventive agents. These findings may suggest a potential of mesalazine as a chemopreventive agent for colorectal cancer.
Insights
Mesalazine, an aminosalicylate, inhibits colon cancer cell growth by causing mitotic arrest and apoptosis. This suggests its potential as a safer chemopreventive agent for colorectal cancer.
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Non-steroidal anti-inflammatory drugs (NSAIDs) show potential for colon cancer chemoprevention but have toxicities.
- Mesalazine, used for inflammatory bowel disease, has a favorable safety profile.
- Emerging data suggest mesalazine may possess anti-proliferative effects beyond its anti-inflammatory actions.
Purpose of the Study:
- To investigate the in vitro growth inhibitory effects of mesalazine on human colon cancer cells.
- To compare mesalazine's efficacy with established chemopreventive agents.
- To elucidate the cellular mechanisms underlying mesalazine's anti-cancer effects.
Main Methods:
- Dose- and time-dependent proliferation assays on human colon cancer cells.
- Comparison with sulindac sulfide and indomethacin.
- Cell cycle analysis to identify mechanisms of growth inhibition (e.g., G1 arrest, mitosis).
- Apoptosis assays, including caspase-3 activation and bcl-2 family protein levels.
Main Results:
- Mesalazine demonstrated dose- and time-dependent inhibition of colon cancer cell proliferation.
- Effective mesalazine concentrations were achievable in vivo.
- Mesalazine induced a mitotic arrest, distinct from the G1 arrest caused by other NSAIDs.
- Apoptosis was induced via partial caspase-3 activation, with no significant changes in bcl-2 family proteins.
Conclusions:
- Mesalazine inhibits colon cancer cell growth primarily through mitotic arrest, a novel mechanism for NSAID-like agents.
- Mesalazine also induces apoptosis, albeit weaker than established agents.
- These findings support mesalazine's potential as a chemopreventive agent for colorectal cancer with a favorable safety profile.
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