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Anticancer activity of tolfenamic acid in medulloblastoma: a preclinical study
Don Eslin1, Chris Lee, Umesh T Sankpal
1MD Anderson Cancer Center Orlando, Orlando, FL, 32806, USA, don.eslin@orlandohealth.com.
Abstract:
Medulloblastoma (MB) is the most common malignancy in children arising in the brain. Morbidities associated with intensive therapy are serious concerns in treating MB. Our aim was to identify novel targets and agents with less toxicity for treating MB. Specificity protein 1 (Sp1) transcription factor regulates several genes involved in cell proliferation and cell survival including survivin, an inhibitor of apoptosis protein. We previously showed that tolfenamic acid (TA), a nonsteroidal anti-inflammatory drug, inhibits neuroblastoma cell growth by targeting Sp1. We investigated the anticancer activity of TA using human MB cell lines and a mouse xenograft model. DAOY and D283 cells were treated with vehicle (dimethyl sulfoxide) or TA (5-50 μg/ml), and cell viability was measured at 1-3 days posttreatment. TA inhibited MB cell growth in a time- and dose-dependent manner. MB cells were treated with vehicle or TA (10 μg/ml), and the effect on cell apoptosis was measured. Apoptosis was analyzed by flow cytometry (annexin V staining), and caspase 3/7 activity was determined using Caspase-Glo kit. The expression of Sp1, cleaved poly(ADP-ribose) polymerase (c-PARP), and survivin was determined by Western blot analysis. TA inhibited the expression of Sp1 and survivin and upregulated c-PARP. Athymic nude mice were subcutaneously injected with D283 cells and treated with TA (50 mg/kg, three times per week) for 4 weeks. TA caused a decrease of ~40 % in tumor weight and volume. The tumor growth inhibition was accompanied by a decrease in Sp1 and survivin expression in tumor tissue. These preclinical data demonstrate that TA acts as an anticancer agent in MB potentially targeting Sp1 and survivin.
Insights
Tolfenamic acid (TA), a nonsteroidal anti-inflammatory drug, effectively inhibits medulloblastoma (MB) cell growth and tumor progression by targeting Sp1 and survivin. This suggests TA as a potential novel therapeutic agent for pediatric brain tumors.
Area of Science:
- Oncology
- Pharmacology
Background:
- Medulloblastoma (MB) is a common pediatric brain tumor with significant treatment-related morbidities.
- Identifying novel, less toxic therapeutic agents for MB is crucial.
- Specificity protein 1 (Sp1) and survivin are key regulators of cell proliferation and survival in cancer.
Purpose of the Study:
- To investigate the anticancer activity of tolfenamic acid (TA) in medulloblastoma.
- To explore the potential of TA as a novel therapeutic agent targeting Sp1 and survivin in MB.
Main Methods:
- Human MB cell lines (DAOY, D283) were treated with TA, and cell viability, apoptosis (flow cytometry, caspase activity), and protein expression (Western blot for Sp1, survivin, c-PARP) were assessed.
- A mouse xenograft model using D283 cells was employed to evaluate TA's efficacy in vivo.
Main Results:
- Tolfenamic acid demonstrated time- and dose-dependent inhibition of MB cell growth.
- TA induced apoptosis and downregulated Sp1 and survivin expression while upregulating cleaved PARP.
- In vivo, TA treatment significantly reduced tumor weight and volume in the xenograft model, with decreased Sp1 and survivin levels in tumor tissue.
Conclusions:
- Tolfenamic acid exhibits potent preclinical anticancer activity against medulloblastoma.
- TA's mechanism involves targeting Sp1 and survivin, leading to apoptosis and growth inhibition.
- TA represents a promising therapeutic candidate for medulloblastoma treatment.
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