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Updated: Aug 10, 2026

Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Published on: August 21, 2013
Activation of p53 by MDM2 antagonists can protect proliferating cells from mitotic inhibitors
Daisy Carvajal1, Christian Tovar, Hong Yang
1Discovery Oncology, Roche Research Center, Hoffmann-La Roche Inc., Nutley, New Jersey 07110, USA.
Abstract:
Recent studies have shown that activation of cell cycle checkpoints can protect normal proliferating cells from mitotic inhibitors by preventing their entry into mitosis. These studies have used genotoxic agents that act, at least in part, by activation of the p53 pathway. However, genotoxic drugs are known also to have p53-independent activities and could affect the sensitivity of tumor cells to antimitotic agents. Recently, we have developed the first potent and selective small-molecule inhibitors of the p53-MDM2 interaction, the nutlins, which activate the p53 pathway only in cells with wild-type but not mutant p53. Using these compounds, we show that p53 activation leads to G1 and G2 phase arrest and can protect cells from mitotic block and apoptosis caused by paclitaxel. Pretreatment of HCT116 and RKO colon cancer cells (wild-type p53) or primary human fibroblasts (1043SK) with nutlins for 24 hours followed by incubation with paclitaxel for additional 48 hours did not increase significantly their mitotic index and protected the cells from the cytotoxicity of paclitaxel. Cancer cells with mutant p53 (MDA-MB-435) responded to the same treatment with mitotic arrest and massive apoptosis. These results have two major implications for cancer therapy. First, p53-activating therapies may have antagonistic effect when combined with mitotic poisons. Second, pretreatment with MDM2 antagonists before chemotherapy of tumors with mutant p53 may offer a partial protection to proliferating normal tissues.
Insights
Activating the p53 pathway with nutlins protects normal cells from paclitaxel-induced toxicity. However, this approach may antagonize cancer therapy in tumors with mutant p53, leading to cell death.
Area of Science:
- Oncology
- Molecular Biology
- Cell Cycle Regulation
Background:
- Cell cycle checkpoints protect proliferating cells from mitotic inhibitors.
- Genotoxic agents activate the p53 pathway but possess p53-independent activities.
- Small-molecule inhibitors of the p53-MDM2 interaction (nutlins) selectively activate the p53 pathway in wild-type p53 cells.
Purpose of the Study:
- To investigate the role of p53 activation in cellular response to mitotic inhibitors.
- To evaluate the therapeutic implications of combining p53-activating agents with antimitotic drugs.
Main Methods:
- Utilized nutlins to activate the p53 pathway in cancer cells and primary fibroblasts.
- Treated cells with nutlins followed by paclitaxel.
- Assessed mitotic index, apoptosis, and cytotoxicity.
Main Results:
- p53 activation by nutlins induced G1 and G2 phase arrest.
- Pretreatment with nutlins protected wild-type p53 cells (HCT116, RKO, 1043SK) from paclitaxel-induced cytotoxicity and mitotic arrest.
- Mutant p53 cancer cells (MDA-MB-435) exhibited mitotic arrest and apoptosis upon combined treatment.
Conclusions:
- p53 activation can protect normal cells from antimitotic agents, suggesting potential antagonism when combined in cancer therapy.
- MDM2 antagonists may offer protective effects for normal tissues during chemotherapy of mutant p53 tumors.
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