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TBK1 Inhibitor Exerts Antiproliferative Effect on Glioblastoma Multiforme Cells
Sarah A Scuderi1, Marika Lanza1, Giovanna Casili1
1Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of MessinaMessinaItaly.
Abstract:
Glioma are common malignant brain tumors, among which glioblastoma multiforme (GBM) has the worst prognosis. Different studies of GBM revealed that targeting nuclear factor B (NF-B) induced an attenuation tumor proliferation and prolonged cell survival. TBK1 {TANK [TRAF (TNF (tumor-necrosis-factor) receptor-associated factor)-associated NF-B activator]-binding kinase 1} is a serine/threonine protein kinase, and it is a member of the IB kinase (IKK) family involved in NF-B pathway activation. The aim of this study was to investigate the potential effect of BX795, an inhibitor of TBK1, in an in vitro and ex vivo model of GBM. GBM cell lines (U87 and U138) and primary GBM cells were treated with different concentrations of BX795 at different time points (24, 48, and 72h) to evaluate cell viability, autophagy, inflammation, and apoptosis. Our results demonstrated that BX795 10 M was able to reduce cell viability, showing antiproliferative effect in U87, U138, and primary GBM cells. Moreover, treatment with BX795 10 M increased the proapoptotic proteins Bax, p53, caspase 3, and caspase 9, whereas the antiapoptotic Bcl-2 expression was reduced. Additionally, our results showed a marked decrease in autophagy following BX795 treatment, reducing Atg 7, Atg 5/12, and AKT expression. The anti-inflammatory effect of BX795 was demonstrated by a significantly reduction in NIK, IKK, and TNF- expression, accompanied by a downregulation of angiogenesis. Furthermore, in primary GBM cell, BX795 10 M was able to reduce TBK1 pathway activation and SOX3 expression. In conclusion, these findings showed that TBK1 is involved in GBM proliferation, demonstrating that the inhibitor BX795, thanks to its abilities, could improve therapeutic strategies for GBM treatment.
Insights
The study found that BX795, a TBK1 inhibitor, effectively reduced glioblastoma multiforme (GBM) cell proliferation and induced apoptosis. This suggests BX795 could be a promising therapeutic agent for GBM treatment by targeting the TBK1 pathway.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Research
Background:
- Glioblastoma multiforme (GBM) is an aggressive brain tumor with poor prognosis.
- Targeting the nuclear factor kappa B (NF-κB) pathway has shown potential in attenuating GBM proliferation and enhancing cell survival.
- TBK1 (TANK-binding kinase 1) is a key kinase in the NF-κB pathway activation cascade.
Purpose of the Study:
- To investigate the therapeutic potential of BX795, a TBK1 inhibitor, against glioblastoma multiforme (GBM).
- To evaluate the effects of BX795 on GBM cell viability, apoptosis, autophagy, and inflammation in vitro and ex vivo.
Main Methods:
- GBM cell lines (U87, U138) and primary GBM cells were treated with BX795 (10 µM) at various time points.
- Assessed cell viability, apoptosis markers (Bax, p53, caspase 3/9, Bcl-2), autophagy markers (Atg7, Atg5/12, AKT), and inflammatory markers (NIK, IKK, TNF-α).
- Evaluated TBK1 pathway activation and SOX3 expression in primary GBM cells.
Main Results:
- BX795 demonstrated significant antiproliferative effects, reducing cell viability in all tested GBM models.
- BX795 treatment increased pro-apoptotic proteins and decreased anti-apoptotic proteins, promoting apoptosis.
- BX795 suppressed autophagy, reduced inflammatory markers, and downregulated angiogenesis.
- In primary GBM cells, BX795 inhibited TBK1 pathway activation and reduced SOX3 expression.
Conclusions:
- TBK1 plays a crucial role in GBM proliferation and survival.
- BX795 exhibits potent anti-GBM activity by inhibiting the TBK1 pathway, inducing apoptosis, and reducing inflammation and autophagy.
- BX795 represents a potential therapeutic candidate for improving GBM treatment strategies.
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