Bergaptol inhibits glioma cell proliferation and induces apoptosis via STAT3/Bcl-2 pathway
Hao Huang1, Junrong Zhang2, Jianbing Wu3
1Department of Neurosurgery, Guang 'an People's Hospital, Guang 'an.
Abstract:
Glioblastoma (GBM) is the most common primary malignant brain tumour and lacks therapeutic options with significant effects. The aberrant activation of STAT3 is a critical factor in glioma progression via activating multiple signalling pathways that promote glioma. Among them, the antiapoptotic gene Bcl-2 could be upregulated by p-STAT3, which is an important reason for the continuous proliferation of glioma. We previously reported that bergaptol, a natural furanocoumarin widely found in citrus products, exerts antineuroinflammatory effects by inhibiting the overactivation of STAT3. Here, we aimed to evaluate whether bergaptol could promote glioma apoptosis by inhibiting the STAT3/Bcl-2 pathway. This study found that bergaptol inhibited the proliferation and migration of GBM cell lines (U87 and A172) and promoted apoptosis in vitro. We also found that bergaptol significantly inhibited the STAT3/Bcl-2 pathway in GBM cells. U87 cells were implanted intracranially into nude mice to establish a glioma model, and glioma-bearing mice were treated with bergaptol (40 mg/kg). Bergaptol treatment significantly inhibited glioma growth and prolonged the glioma-bearing mice's survival time. In addition, bergaptol administration also significantly inhibited the STAT3/Bcl-2 pathway of tumour tissue in vivo. Overall, we found that bergaptol could effectively play an antiglioma role by inhibiting STAT3/Bcl-2 pathway, suggesting the potential efficacy of bergaptol in treating glioma.
Insights
Bergaptol, a natural compound, effectively combats glioblastoma by inhibiting the STAT3/Bcl-2 pathway, reducing tumor growth and promoting cancer cell death. This suggests bergaptol
Area of Science:
- Neuro-oncology
- Molecular Biology
- Pharmacology
Background:
- Glioblastoma (GBM) is an aggressive brain tumor with limited treatment options.
- Aberrant STAT3 activation drives glioma progression by upregulating anti-apoptotic genes like Bcl-2, promoting cell survival.
- Bergaptol, a natural furanocoumarin, previously showed potential in inhibiting STAT3 overactivation.
Purpose of the Study:
- To investigate the efficacy of bergaptol in promoting glioma apoptosis.
- To determine if bergaptol inhibits the STAT3/Bcl-2 pathway in glioblastoma.
Main Methods:
- In vitro studies using GBM cell lines (U87, A172) to assess proliferation, migration, and apoptosis.
- Western blot analysis to evaluate STAT3 and Bcl-2 pathway inhibition.
- In vivo studies using an intracranial U87 GBM mouse model treated with bergaptol.
Main Results:
- Bergaptol significantly inhibited GBM cell proliferation and migration while inducing apoptosis in vitro.
- Bergaptol treatment suppressed the STAT3/Bcl-2 signaling pathway in GBM cells.
- In vivo, bergaptol administration reduced tumor growth and extended survival in glioma-bearing mice, with suppressed STAT3/Bcl-2 pathway in tumor tissues.
Conclusions:
- Bergaptol demonstrates significant anti-glioma activity by inhibiting the STAT3/Bcl-2 pathway.
- These findings highlight bergaptol's potential as a therapeutic agent for glioblastoma treatment.
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