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Published on: October 11, 2017
Antifolate activity of pyrimethamine enhances temozolomide-induced cytotoxicity in melanoma cells
Ming Chen1, Iman Osman, Seth J Orlow
1The Ronald O. Perelman Department of Dermatology, and the New York University Cancer Institute Clinical Cancer Center, New York, New York, USA.
Abstract:
Most metastatic melanoma patients fail to respond to available therapy, underscoring the need to develop more effective treatments. We screened 2,000 compounds from the Spectrum Library in human melanoma cell lines to identify compounds that enhanced the cytotoxic effect of temozolomide, a drug used to treat metastatic melanoma. Screening was done with the temozolomide-resistant melanoma cell line SK-MEL-19, and six compounds were identified that had little or no inherent cytotoxicity but significantly enhanced growth-inhibition by temozolomide. These compounds were tested in five additional melanoma cell lines. Cell proliferation and death assays were used to compare the efficacy of single agent temozolomide versus combination treatments. Effects of combination treatment on levels of DNA double-strand breaks, the DNA repair protein O(6)-methylguanine-DNA-methyltransferase, apoptosis [measured by cleaved caspase-3 and poly(ADP-ribose) polymerase], and cell cycle were examined. Pyrimethamine, an antiparasitic, sensitized melanoma cells to temozolomide. Temozolomide combined with Pyrimethamine synergistically inhibited cell proliferation in melanoma cells with combination index values of 0.7 or less. In addition, combination treatment induced cell cycle arrest and increased both DNA damage and apoptosis. The increase in cell death due to combination treatment was rescued by leucovorin. Other folate antagonists were also effective enhancers of temozolomide-induced cytotoxicity, and the effects of antifolates were also evident in gliomas. Our screening approach led to the identification of Pyrimethamine, an orally available drug that efficiently crosses the blood-brain barrier, as a potent enhancer of the efficacy of temozolomide as an antineoplastic agent via inhibition of folate metabolism.
Insights
Researchers identified pyrimethamine as a drug that enhances temozolomide
Area of Science:
- Oncology
- Pharmacology
- Cancer Research
Background:
- Metastatic melanoma often resists current therapies, necessitating novel treatment strategies.
- Temozolomide is a standard treatment for metastatic melanoma, but resistance is a significant challenge.
Purpose of the Study:
- To identify compounds that enhance the efficacy of temozolomide in melanoma treatment.
- To investigate the mechanisms by which identified compounds sensitize melanoma cells to temozolomide.
Main Methods:
- Screening of 2,000 compounds from the Spectrum Library against temozolomide-resistant melanoma cells (SK-MEL-19).
- Assays for cell proliferation, apoptosis, DNA damage, and cell cycle progression.
- Evaluation of combination treatments with temozolomide and identified enhancers in multiple melanoma cell lines.
Main Results:
- Six compounds significantly enhanced temozolomide's growth-inhibitory effects.
- Pyrimethamine, an antiparasitic, synergistically inhibited melanoma cell proliferation with temozolomide (combination index < 0.7).
- Combination treatment induced cell cycle arrest, increased DNA damage and apoptosis, effects reversed by leucovorin.
Conclusions:
- Pyrimethamine potentiates temozolomide's antineoplastic activity by inhibiting folate metabolism.
- This combination therapy shows promise for treating temozolomide-resistant melanoma and potentially gliomas.
- Pyrimethamine's oral availability and blood-brain barrier penetration make it an attractive candidate for further clinical development.
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