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Published on: February 20, 2017
Cell death in cancer chemotherapy using taxanes
Ana P Xu1, Lucy B Xu1, Elizabeth R Smith2,3
1Department of Biology, University of Miami, Coral Gables, FL, United States.
Abstract:
Cancer cells evolve to be refractory to the intrinsic programmed cell death mechanisms, which ensure cellular tissue homeostasis in physiological conditions. Chemotherapy using cytotoxic drugs seeks to eliminate cancer cells but spare non-cancerous host cells by exploring a likely subtle difference between malignant and benign cells. Presumably, chemotherapy agents achieve efficacy by triggering programmed cell death machineries in cancer cells. Currently, many major solid tumors are treated with chemotherapy composed of a combination of platinum agents and taxanes. Platinum agents, largely cis-platin, carboplatin, and oxaliplatin, are DNA damaging agents that covalently form DNA addicts, triggering DNA repair response pathways. Taxanes, including paclitaxel, docetaxel, and cabazitaxel, are microtubule stabilizing drugs which are often very effective in purging cancer cells in clinical settings. Generally, it is thought that the stabilization of microtubules by taxanes leads to mitotic arrest, mitotic catastrophe, and the triggering of apoptotic programmed cell death. However, the precise mechanism(s) of how mitotic arrest and catastrophe activate the caspase pathway has not been established. Here, we briefly review literature on the involvement of potential cell death mechanisms in cancer therapy. These include the classical caspase-mediated apoptotic programmed cell death, necroptosis mediated by MLKL, and pore forming mechanisms in immune cells, etc. In particular, we discuss a newly recognized mechanism of cell death in taxane-treatment of cancer cells that involves micronucleation and the irreversible rupture of the nuclear membrane. Since cancer cells are commonly retarded in responding to programmed cell death signaling, stabilized microtubule bundle-induced micronucleation and nuclear membrane rupture, rather than triggering apoptosis, may be a key mechanism accounting for the success of taxanes as anti-cancer agents.
Insights
Cancer cells resist programmed cell death. Taxanes, a chemotherapy drug, may kill cancer cells by causing nuclear membrane rupture via micronucleation, rather than apoptosis.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Cancer cells evade programmed cell death, hindering effective treatment.
- Chemotherapy aims to exploit differences between cancer and normal cells to induce cell death.
- Platinum agents and taxanes are common chemotherapy combinations for solid tumors.
Purpose of the Study:
- To review cell death mechanisms in cancer therapy.
- To discuss the role of taxanes in cancer cell death.
- To highlight a newly recognized cell death mechanism induced by taxanes.
Main Methods:
- Literature review of programmed cell death pathways.
- Analysis of taxane mechanisms in cancer cells.
- Discussion of micronucleation and nuclear membrane rupture.
Main Results:
- Classical apoptosis involves caspase activation.
- Necroptosis is mediated by MLKL.
- Taxanes induce micronucleation and nuclear membrane rupture in cancer cells.
Conclusions:
- Taxane-induced micronucleation and nuclear membrane rupture may be a key mechanism of cancer cell death.
- This mechanism bypasses the typical apoptosis pathway, which cancer cells often resist.
- Understanding this pathway could improve taxane-based cancer therapies.
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