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Apoptosis in antitumor strategies: modulation of cell cycle or differentiation
1Cancer Research Institute, New York Medical College, Valhalla 10595, USA.
Abstract:
There is a strong evidence that administration of antitumor drugs triggers apoptotic death of target cells. A characteristic feature of apoptosis is active participation of the affected cell in its demise. Attempts have been made, therefore, to potentiate the cytotoxicity of a variety of agents by modulating the propensity of cells to respond by apoptosis. Several strategies to enhance apoptosis that involve modulation of the cell cycle or differentiation are discussed. Loss of control of the G1 checkpoint in tumor cells allows one to design treatments that arrest normal cells at the checkpoint and attempt to selectively kill tumor cells with S phase specific drugs. The possibility of a restoration of the apoptosis triggering function of the tumor suppressor gene p53 when the G1 checkpoint function is abolished is expected to increase tumor cells' sensitivity to S phase poisons. Because induction of apoptosis by many antitumor drugs is cell cycle phase specific, drug combinations that preferentially trigger apoptosis at different phases of the cycle, or recruitment of cells to the sensitive phase, offer another antitumor strategy. There is also evidence that apoptosis is potentiated when cell differentiation is triggered following DNA damage. This observation suggests that strategies which combine DNA damaging and differentiating drugs, under conditions where the latter are administered following DNA damage caused by the former, may be successful.
Insights
Enhancing antitumor drug effectiveness involves manipulating programmed cell death (apoptosis). Strategies focus on cell cycle control and differentiation to selectively target cancer cells for improved therapeutic outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Antitumor drugs commonly induce apoptosis, a form of programmed cell death.
- Cancer cells actively participate in their own demise during apoptosis.
- Modulating cellular responses to apoptosis can enhance drug cytotoxicity.
Purpose of the Study:
- To explore strategies for potentiating the efficacy of antitumor agents.
- To investigate methods for enhancing cancer cell apoptosis.
- To discuss the role of cell cycle modulation and differentiation in cancer therapy.
Main Methods:
- Discusses strategies involving cell cycle checkpoint modulation (e.g., G1 checkpoint).
- Explores the restoration of tumor suppressor gene p53 function.
- Examines drug combinations targeting different cell cycle phases and DNA damage-induced differentiation.
Main Results:
- Disrupting the G1 checkpoint in tumor cells can enable selective killing with S phase-specific drugs.
- Restoring p53 function may sensitize tumor cells to S phase poisons.
- Combining DNA damaging agents with differentiating drugs, sequentially administered, shows potential for enhanced apoptosis.
Conclusions:
- Targeting the cell cycle and promoting differentiation are viable strategies to enhance apoptosis and antitumor drug effectiveness.
- Sequential administration of DNA damaging and differentiating agents offers a promising therapeutic approach.
- Further research into these strategies could lead to improved cancer treatments.