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Updated: Dec 11, 2025

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Anticancer Strategy Targeting Cell Death Regulators: Switching the Mechanism of Anticancer Floxuridine-Induced Cell
Akira Sato1, Akiko Hiramoto2, Hye-Sook Kim2
1Department of Biochemistry and Molecular Biology, Faculty of Pharmaceutical Sciences, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.
Abstract:
Cell death can be broadly characterized as either necrosis or apoptosis, depending on the morphological and biochemical features of the cell itself. We have previously reported that the treatment of mouse mammary carcinoma FM3A cells with the anticancer drug floxuridine (FUdR) induces necrosis in the original clone F28-7 but apoptosis in the variant F28-7-A. We have identified regulators, including heat shock protein 90, lamin-B1, cytokeratin-19, and activating transcription factor 3, of cell death mechanisms by using comprehensive gene and protein expression analyses and a phenotype-screening approach. We also observed that the individual inhibition or knockdown of the identified regulators in F28-7 results in a shift from necrotic to apoptotic morphology. Furthermore, we investigated microRNA (miRNA, miR) expression profiles in sister cell strains F28-7 and F28-7-A using miRNA microarray analyses. We found that several unique miRNAs, miR-351-5p and miR-743a-3p, were expressed at higher levels in F28-7-A than in F28-7. Higher expression of these miRNAs in F28-7 induced by transfecting miR mimics resulted in a switch in the mode of cell death from necrosis to apoptosis. Our findings suggest that the identified cell death regulators may play key roles in the decision of cell death mechanism: necrosis or apoptosis.
Insights
Anticancer drug FUdR induces necrosis or apoptosis in cancer cells. Specific regulators and microRNAs (miRNAs) control cell death pathways, shifting the cell death mode from necrosis to apoptosis.
Area of Science:
- Cell biology
- Molecular oncology
- Biochemistry
Background:
- Cell death is classified as necrosis or apoptosis based on cellular features.
- Anticancer drug floxuridine (FUdR) induces differential cell death (necrosis vs. apoptosis) in mouse mammary carcinoma FM3A cell clones.
Purpose of the Study:
- To identify regulators of necrosis and apoptosis.
- To investigate the role of microRNAs (miRNAs) in determining cell death mechanisms.
Main Methods:
- Comprehensive gene and protein expression analyses.
- Phenotype-screening approach.
- miRNA microarray analyses and transfections.
Main Results:
- Identified regulators (HSP90, lamin-B1, cytokeratin-19, ATF3) that, when inhibited, shift necrotic cells to apoptotic morphology.
- Discovered unique miRNAs (miR-351-5p, miR-743a-3p) highly expressed in apoptotic cells.
- Transfection of these miRNAs induced a switch from necrosis to apoptosis in necrotic cells.
Conclusions:
- Identified cell death regulators and specific miRNAs play crucial roles in dictating the cell death mechanism (necrosis vs. apoptosis).
- These findings offer insights into controlling cell death pathways in cancer therapy.
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