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Apoptotic events in a human ovarian cancer cell line exposed to anthracyclines
D Bellarosa1, A Ciucci, A Bullo
1Menarini Ricerche S.p.A., Department of Pharmacology, Pomezia, Roma, Italy.
Abstract:
Cytotoxic drugs commonly used in cancer therapy promote tumor cell death by inducing apoptosis, but the cell death pathway(s) is likely dependent on the mechanism of drug action. In the present study, we investigated the mechanisms of cell death induced by doxorubicin (DXR) and the novel disaccharide anthracycline MEN 10755, in a human ovarian cancer cell line (A2780). Exposure to either anthracycline induced the up-regulation of several genes known to promote cell cycle arrest and DNA repair (WAF1/p21, GADD45) or apoptosis (bax, Fas). Although the expression of Fas was increased, an antagonistic anti-Fas antibody ZB4 did not inhibit anthracycline-induced apoptosis, suggesting that the stimulation of the Fas receptor did not play a critical role in the induction of apoptosis in this cell line. We also observed that neither MEN 10755 nor DXR were able to induce apoptosis in A2780 cells deprived of the nucleus but retaining an intact mitochondrial function (cytoplasts) and that apoptosis induced by either anthracycline was inhibited by cycloheximide, indicating that it is an active process requiring new protein synthesis. Both the caspases inhibitors, ZVAD-fmk and DEVD-cho, inhibited at similar extent apoptosis induced by either DXR or MEN 10755, suggesting an involvement of caspase-3 in this response. We conclude that, in a tumor cell line of epithelial origin, the apoptosis following exposure to anthracyclines is an active process requiring protein synthesis and drug interaction with nuclear structures. The pathway was Fas-independent but likely involved bax and caspase-3 as effectors of the cascade culminating in apoptosis.
Insights
Doxorubicin and MEN 10755 induce apoptosis in ovarian cancer cells through a Fas-independent pathway requiring protein synthesis and nuclear interaction, involving caspase-3. This cancer cell death mechanism offers new therapeutic insights.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Mechanisms
Background:
- Cancer therapies often induce apoptosis, but pathways vary by drug.
- Anthracyclines like doxorubicin (DXR) are common cytotoxic drugs.
- Understanding specific drug-induced apoptosis mechanisms is crucial for effective cancer treatment.
Purpose of the Study:
- Investigate the cell death mechanisms of doxorubicin (DXR) and MEN 10755 in human ovarian cancer cells.
- Determine the role of Fas receptor and caspase activation in anthracycline-induced apoptosis.
- Elucidate the requirement for protein synthesis and nuclear interaction in this process.
Main Methods:
- Utilized human ovarian cancer cell line A2780.
- Analyzed gene expression changes (WAF1/p21, GADD45, bax, Fas).
- Employed cytoplasts, anti-Fas antibody (ZB4), cycloheximide, and caspase inhibitors (ZVAD-fmk, DEVD-cho).
Main Results:
- Both DXR and MEN 10755 upregulated genes associated with cell cycle arrest and apoptosis (WAF1/p21, GADD45, bax, Fas).
- Fas receptor stimulation was not critical for apoptosis induction, as shown by ZB4 antibody.
- Apoptosis required new protein synthesis and nuclear interaction, and was inhibited by caspase inhibitors, implicating caspase-3.
Conclusions:
- Anthracycline-induced apoptosis in ovarian cancer cells is an active, protein synthesis-dependent process.
- The pathway is Fas-independent but involves bax and caspase-3.
- Drug interaction with nuclear structures is essential for initiating apoptosis.