Key result
Doxazosin induced concentration-dependent apoptosis of human glioblastoma cells, with an EC50 of 35 μM in LNT-229 cells and 29 μM in U87MG cells, accompanied by cell cycle arrest.
Why the study?
Does doxazosin induce apoptosis and inhibit proliferation in human glioblastoma cells?
Does doxazosin induce apoptosis and inhibit proliferation in human glioblastoma cells?
Effect estimate: EC50 35.3 μM
Doxazosin promotes apoptosis and exerts anti-proliferative effects in human glioblastoma cells via suppression of hERG protein, suggesting a potential novel therapeutic option.
Hypothesis-generating for doxazosin in glioblastoma; in vivo validation required before any clinical consideration.
Glioblastoma (GB) is associated with poor patient survival owing to uncontrolled tumor proliferation and resistance to apoptosis. Human ether-a-go-go-related gene K(+) channels (hERG; Kv11.1, KCNH2) are expressed in multiple cancer cells including GB and control cell proliferation and death. We hypothesized that pharmacological targeting of hERG protein would inhibit tumor growth by inducing apoptosis of GB cells. The small molecule hERG ligand doxazosin induced concentration-dependent apoptosis of human LNT-229 (EC50 = 35 µM) and U87MG (EC50 = 29 µM) GB cells, accompanied by cell cycle arrest in the G0/G1 phase. Apoptosis was associated with 64% reduction of hERG protein. HERG suppression via siRNA-mediated knock down mimicked pro-apoptotic effects of doxazosin. Antagonism of doxazosin binding by the non-apoptotic hERG ligand terazosin resulted in rescue of protein expression and in increased survival of GB cells. At the molecular level doxazosin-dependent apoptosis was characterized by activation of pro-apoptotic factors (phospho-erythropoietin-producing human hepatocellular carcinoma receptor tyrosine kinase A2, phospho-p38 mitogen-activated protein kinase, growth arrest and DNA damage inducible gene 153, cleaved caspases 9, 7, and 3), and by inactivation of anti-apoptotic poly-ADP-ribose-polymerase, respectively. In summary, this work identifies doxazosin as small molecule compound that promotes apoptosis and exerts anti-proliferative effects in human GB cells. Suppression of hERG protein is a crucial molecular event in GB cell apoptosis. Doxazosin and future derivatives are proposed as novel options for more effective GB treatment.
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Staudacher et al. (2014) studied Glioblastoma. Doxazosin vs. Solvent control was evaluated on Cell viability (EC50) (EC50 35.3 μM). Doxazosin induced concentration-dependent apoptosis of human glioblastoma cells, with an EC50 of 35 μM in LNT-229 cells and 29 μM in U87MG cells, accompanied by cell cycle arrest.
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