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Establishing Cell Lines Overexpressing DR3 to Assess the Apoptotic Response to Anti-mitotic Therapeutics
Published on: January 11, 2019
Mitotic drug targets and the development of novel anti-mitotic anticancer drugs
Mathias Schmidt1, Holger Bastians
1Altana Pharma AG, Therapeutic Area Oncology, Byk-Gulden Strasse 2, Konstanz, Germany.
Abstract:
Drugs that interfere with the normal progression of mitosis belong to the most successful chemotherapeutic compounds currently used for anti-cancer treatment. Classically, these drugs are represented by microtubule binding drugs that inhibit the function of the mitotic spindle in order to halt the cell cycle in mitosis and to induce apoptosis in tumor cells. However, these compounds act not only on proliferating tumor cells, but exhibit significant side effects on non-proliferating cells including neurons that are highly dependent on intracellular transport processes mediated by microtubules. Therefore, there is a particular interest in developing novel anti-mitotic drugs that target non-microtubule structures. In fact, recently several novel drugs that target mitotic kinesins or the Aurora and polo-like kinases have been developed and are currently tested in clinical trials. In addition, approaches of cell cycle checkpoint abrogation during mitosis and at the G2/M transition inducing mitosis-associated tumor cell death are promising new strategies for anti-cancer therapy. It is expected that this "next generation" of anti-mitotic drugs will be as successful as the classical anti-microtubule drugs, while avoiding some of the adverse side effects.
Insights
New anti-mitotic drugs targeting non-microtubule structures offer promising cancer therapies. These next-generation treatments aim to reduce side effects seen with traditional chemotherapy by targeting mitotic kinesins and kinases.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Microtubule-binding drugs are effective chemotherapy agents, halting cancer cell division by disrupting the mitotic spindle.
- These drugs cause significant side effects in non-proliferating cells, such as neurons, due to their reliance on microtubule-mediated transport.
Purpose of the Study:
- To explore novel anti-mitotic drug strategies that target structures other than microtubules.
- To develop cancer therapies with improved efficacy and reduced adverse effects.
Main Methods:
- Development and clinical testing of novel drugs targeting mitotic kinesins, Aurora kinases, and polo-like kinases.
- Investigating cell cycle checkpoint abrogation strategies to induce tumor cell death.
Main Results:
- Several novel anti-mitotic drugs targeting non-microtubule structures are in clinical trials.
- Checkpoint abrogation strategies show promise for inducing mitosis-associated tumor cell death.
Conclusions:
- Next-generation anti-mitotic drugs targeting novel pathways are expected to be highly successful in cancer treatment.
- These new agents have the potential to overcome the limitations and side effects associated with traditional microtubule-targeting drugs.
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