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Progesterone antagonists: tumor-inhibiting potential and mechanism of action
Abstract:
A new approach for the treatment of breast cancer could be the use of progesterone antagonists. These compounds were originally developed for the inhibition of progesterone-dependent processes and have been shown to be effective in inhibition of nidation and interruption of pregnancy. Although the roles of progesterone and the progesterone receptor in control of cell growth remain unclear, it was found in progesterone receptor positive mammary carcinoma cell lines that the antiprogestin, Mifepristone, had an inhibitory effect on cell growth and a growth-inhibiting action on the DMBA-induced mammary carcinoma of the rat. We have shown that the progesterone antagonists, Onapristone and ZK 112993, which possess a reduced antiglucocorticoid activity compared to Mifepristone, exert a strong tumor-inhibiting effect in a panel of hormone-dependent mammary tumor models. The effects of these compounds were in some systems superior to those of tamoxifen or high dose progestins and comparable to ovariectomy. Although prerequisites for their antiproliferative potency are an affinity to the progesterone receptor as well as a sufficient number of available receptors in the tumors, the strong tumor inhibiting potential of the antiprogestins cannot be explained by a classical anti-hormonal mechanism. Surprisingly, the antitumor activity is evident in spite of elevated serum levels of ovarian and pituitary hormones. It was established by morphometric procedures that treatment with Onapristone triggers differentiation of the mitotically active polygonal tumor epithelial cell towards secretory active glandular structures and acini. All our quantitative light and electron microscopic data indicate that the antitumor action of antiprogestins is accompanied by the initiation of terminal differentiation leading to (apoptotic) cell death. Finally, our flow cytometry studies revealed an accumulation of the tumor cells in the G0G1 phase of the cell cycle, which may result from induction of differentiation since a differentiation-specific G1 arrest has already been proposed for other stem cell systems. It can be concluded from these data that the progesterone receptor antagonists differ in their mode of action from compounds used in established endocrine treatment strategies for mammary carcinoma. The ability of progesterone antagonists like Onapristone to reduce the number of cells in S-phase may offer a significant clinical advantage, since it is established that the S-phase fraction is a highly significant predictor of disease-free survival among axillary node-negative patients with diploid mammary tumors.
Insights
Progesterone antagonists like Onapristone show strong tumor inhibition in breast cancer models by inducing cell differentiation and G0G1 cell cycle arrest. This novel mechanism offers potential clinical advantages over existing endocrine therapies.
Area of Science:
- Endocrinology
- Oncology
- Pharmacology
Background:
- Progesterone antagonists were initially developed to inhibit progesterone-dependent processes.
- Mifepristone demonstrated inhibitory effects on progesterone receptor-positive mammary carcinoma cell lines and rat mammary tumors.
- The precise roles of progesterone and its receptor in cell growth control remain incompletely understood.
Purpose of the Study:
- To investigate the tumor-inhibiting effects of novel progesterone antagonists, Onapristone and ZK 112993, in hormone-dependent mammary tumor models.
- To explore the mechanism of action of these antiprogestins, comparing them to established treatments like tamoxifen and ovariectomy.
- To assess the impact of these compounds on cell differentiation, cell cycle progression, and tumor cell death.
Main Methods:
- Evaluation of Onapristone and ZK 112993 in various hormone-dependent mammary tumor models.
- Morphometric analysis to assess cellular differentiation and structural changes.
- Quantitative light and electron microscopy to examine cellular morphology and apoptosis.
- Flow cytometry to analyze cell cycle distribution (G0G1 and S-phase).
Main Results:
- Onapristone and ZK 112993 demonstrated significant tumor-inhibiting effects, comparable or superior to tamoxifen and ovariectomy in some models.
- Antitumor activity was observed despite elevated levels of ovarian and pituitary hormones.
- Onapristone treatment induced differentiation of tumor cells into glandular structures and acini, leading to apoptotic cell death.
- Flow cytometry revealed an accumulation of tumor cells in the G0G1 phase of the cell cycle.
Conclusions:
- Progesterone receptor antagonists exhibit a distinct mode of action compared to established endocrine therapies for mammary carcinoma.
- The induction of terminal differentiation and subsequent cell death appears to be the primary antitumor mechanism.
- Reduction of cells in the S-phase by these antiprogestins may offer significant clinical benefits, as S-phase fraction predicts survival.