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Synergistic growth inhibition based on small-molecule p53 activation as treatment for intraocular melanoma
1Department of Molecular Cell Biology, Leiden University Medical Center, Leiden, The Netherlands.
Abstract:
The prognosis of patients with uveal melanoma is poor. Because of the limited efficacy of current treatments, new therapeutic strategies need to be developed. Because p53 mutations are uncommon in uveal melanoma, reactivation of p53 may be used to achieve tumor regression. We investigated the use of combination therapies for intraocular melanoma, based on the p53 activators Nutlin-3 and reactivation of p53 and induction of tumor cell apoptosis (RITA) and the topoisomerase I inhibitor Topotecan. Nutlin-3 treatment induced p53-dependent growth inhibition in human uveal melanoma cell lines. The sensitivity to Nutlin-3 of the investigated cell lines did not correlate with basal Hdm2 or Hdmx levels. Nutlin-3 synergized with RITA and Topotecan to induce apoptosis in uveal melanoma cell lines and short-term cultures. Drug synergy correlated with enhanced induction of p53-Ser46 phosphorylation, which was attenuated by ATM inhibition. Nutlin-3 and Topotecan also significantly delayed tumor growth in vivo in a murine B16F10 model for ocular melanoma. Combination treatment appeared to inhibit tumor growth slightly more efficient than either drug alone. Nutlin-3, RITA and Topotecan lead to comparable p53 activation and growth inhibition under normoxia and hypoxia. Treatment with Nutlin-3 or RITA had no effect on HIF-1α induction by hypoxia, whereas the combination of these two drugs did inhibit hypoxia-induced HIF-1α. Also Topotecan, alone or in combination with Nutlin-3, reduced HIF-1α protein levels, suggesting that a certain level of DNA damage response is required for p53-mediated downregulation of HIF-1α. In conclusion, combination treatments based on small-molecule-induced p53 activation may have clinical potential for uveal melanoma.
Insights
New combination therapies targeting p53 reactivation, including Nutlin-3, RITA, and Topotecan, show promise for treating uveal melanoma. These treatments effectively inhibit tumor growth and induce apoptosis, offering a potential new strategy for this challenging ocular cancer.
Area of Science:
- Oncology
- Ophthalmology
- Molecular Biology
Background:
- Uveal melanoma has a poor prognosis with limited effective treatments.
- p53 mutations are rare, suggesting p53 reactivation is a viable therapeutic strategy.
- Novel combination therapies are needed to improve outcomes for intraocular melanoma patients.
Purpose of the Study:
- To investigate combination therapies for uveal melanoma using p53 activators (Nutlin-3, RITA) and Topotecan.
- To assess the efficacy of these combinations in inducing apoptosis and inhibiting tumor growth.
- To explore the mechanisms of p53 activation and its interaction with hypoxia-inducible factor 1-alpha (HIF-1α).
Main Methods:
- Utilized human uveal melanoma cell lines and short-term cultures.
- Administered Nutlin-3, RITA, and Topotecan individually and in combination.
- Assessed p53 activation, apoptosis induction, and p53-Ser46 phosphorylation.
- Evaluated tumor growth in a murine B16F10 ocular melanoma model.
- Investigated effects under normoxia and hypoxia, including HIF-1α levels.
Main Results:
- Nutlin-3 induced p53-dependent growth inhibition in uveal melanoma cells.
- Nutlin-3 synergized with RITA and Topotecan to promote apoptosis.
- Combination therapy significantly delayed tumor growth in vivo.
- Synergistic apoptosis correlated with enhanced p53-Ser46 phosphorylation.
- Combined treatment inhibited hypoxia-induced HIF-1α, dependent on DNA damage response.
Conclusions:
- Combination therapies based on small-molecule-induced p53 activation hold clinical potential for uveal melanoma.
- These novel strategies may overcome limitations of current treatments.
- Further research into p53-targeted therapies is warranted for ocular cancers.
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