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Updated: Sep 22, 2025

Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Published on: August 21, 2013
Daunorubicin can eliminate iPS-derived cancer stem cells via ICAD/CAD-independent DNA fragmentation
Akimasa Seno1, Akifumi Mizutani2, Kazuki Aizawa2
1Laboratory of Nano-Biotechnology, Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, Okayama 700-8530, Japan.
Abstract:
Aim: To identify a drug that can effectively eliminate these cancer stem cells (CSCs) and determine its mode of action. Methods: CSCs were obtained from mouse induced pluripotent stem cells (miPSCs) using cancer cell-conditioned media. Drug screening was performed on these cells or after transplantation into mice. Apoptosis was analyzed by flow cytometry and western blotting. Results: Drug screening studies showed that daunorubicin, a topoisomerase II inhibitor, is specifically cytotoxic to miPS-CSCs. Daunorubicin-induced apoptosis was found to be associated with p53 accumulation, activation of the caspase cascade, and oligonucleosomal DNA fragmentation. Treatment with the caspase inhibitor abolished daunorubicin-induced DNA fragmentation and was therefore considered to act downstream of caspase activation. This was also suppressed by treatment with a Ca2+-specific chelator, which suggested that CAD endonuclease does not contribute. Moreover, no obvious ICAD reduction/degradation was detected. Conclusion: Daunorubicin effectively eliminated CSCs, which are dependent on the p53/caspase signaling cascade. The current findings provided the basis for further studies on CSC-targeted drugs for the development of cancer treatment strategies.
Insights
Daunorubicin effectively eliminates cancer stem cells (CSCs) by inducing apoptosis through the p53/caspase pathway. This discovery offers a promising strategy for developing targeted cancer therapies.
Area of Science:
- Oncology
- Stem Cell Biology
- Pharmacology
Background:
- Cancer stem cells (CSCs) are crucial for tumor initiation and resistance to therapy.
- Identifying drugs that specifically target CSCs is essential for effective cancer treatment.
Purpose of the Study:
- To discover a drug capable of eliminating CSCs.
- To elucidate the mechanism of action of such a drug.
Main Methods:
- CSCs were derived from mouse induced pluripotent stem cells (miPSCs).
- Drug screening was conducted on miPSC-derived CSCs in vitro and in vivo.
- Apoptosis was assessed using flow cytometry and western blotting.
Main Results:
- Daunorubicin, a topoisomerase II inhibitor, demonstrated specific cytotoxicity against miPSC-CSCs.
- Daunorubicin induced apoptosis via p53 accumulation, caspase cascade activation, and DNA fragmentation.
- The apoptotic process was downstream of caspase activation and independent of CAD endonuclease.
Conclusions:
- Daunorubicin effectively eliminates CSCs by engaging the p53/caspase signaling pathway.
- These findings support the development of CSC-targeted therapies for cancer treatment.
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