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Cytotoxic and apoptotic functions of licofelone on rat glioma cells
Gokhan Kus1, Pinar Oztopcu-Vatan, Ruhi Uyar
1Anadolu University Department of Health Program, Open Faculty Eskisehir Turkey.
Abstract:
Gliomas are the largest group of central nervous system tumors and despite of clinical treatments death rate is very high. Inhibition of both cyclooxygenase and lipoxygenase pathways that take role in arachidonic acid metabolism prevents cancer development and induces apoptosis. One of the most promising compounds that blocks both of these pathways is licofelone. Using colchicine and 5-fluorouracil as positive controls, we questioned whether licofelone affects the survival of rat glioma cell line (C6) and induces apoptosis in vitro. After growing the cells in culture, we determined viability with MT, apoptosis with flow cytometry and activity of caspase enzymes with real time PCR. All used doses of colchicine and 5-fluorouracil were cytotoxic and reduced the number of surviving C6 cells as much as 44% and 60%, respectively. Comparing to the control, treatments with 10, 50 and 100 μM licofelone for 24 or 48 h did not influence C6 survival, however, 150, 200 and 250 μM licofelone reduced the number of living cells by 58, 88 and 93%, respectively, and induced apoptosis of C6 cells in a dose and time dependent manner. Licofelone did not change the level of caspase-9, but increased the level of caspase-3. Comparing with 5-fluorouracil and colchicine, the present study reveals for the first time the possibility that licofelone possesses a strong dose and time dependent antiproliferative and proapoptotic properties on glioma cells.
Insights
Licofelone, a dual cyclooxygenase and lipoxygenase inhibitor, effectively reduced glioma cell survival and induced apoptosis in a dose-dependent manner. This compound shows promise for treating gliomas, a deadly form of brain cancer.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Gliomas are aggressive central nervous system tumors with high mortality rates despite current treatments.
- Inhibiting cyclooxygenase and lipoxygenase pathways, involved in arachidonic acid metabolism, can prevent cancer and induce apoptosis.
- Licofelone is a promising compound that inhibits both these pathways.
Purpose of the Study:
- To investigate the in vitro effects of licofelone on the survival and apoptosis of rat glioma cell line (C6).
- To compare licofelone's efficacy against glioma cells with positive controls, colchicine and 5-fluorouracil.
Main Methods:
- Cell viability was assessed using MTT assays.
- Apoptosis was quantified via flow cytometry.
- Caspase enzyme activity was measured using real-time PCR.
Main Results:
- Colchicine and 5-fluorouracil exhibited significant cytotoxicity against C6 cells.
- Licofelone demonstrated dose- and time-dependent antiproliferative effects, reducing cell viability by up to 93% at higher concentrations (150-250 μM).
- Licofelone induced apoptosis in C6 cells and increased caspase-3 activity, without affecting caspase-9 levels.
Conclusions:
- Licofelone exhibits potent antiproliferative and proapoptotic properties against glioma cells in vitro.
- These findings suggest licofelone's potential as a therapeutic agent for glioma treatment.
- Licofelone's mechanism involves the induction of apoptosis, mediated in part by caspase-3 activation.
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