Mechanisms involved in kinin-induced glioma cells proliferation: the role of ERK1/2 and PI3K/Akt pathways

Gliomas are the most common malignant brain tumors in adults. Bradykinin (BK) displays an important role in cancer, although the exact role of kinin receptors in the glioma biology remains unclear. This study investigated the role of kinin B 1 and B 2 receptors (B 1 R and B 2 R) on cell proliferatio...

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Veröffentlicht in:Journal of neuro-oncology 2014-11, Vol.120 (2), p.235-244
Hauptverfasser: Nicoletti, Natália Fontana, Erig, Thaís Cristina, Zanin, Rafael Fernandes, Pereira, Talita Carneiro Brandão, Bogo, Mauricio Reis, Campos, Maria Martha, Morrone, Fernanda Bueno
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Sprache:eng
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Zusammenfassung:Gliomas are the most common malignant brain tumors in adults. Bradykinin (BK) displays an important role in cancer, although the exact role of kinin receptors in the glioma biology remains unclear. This study investigated the role of kinin B 1 and B 2 receptors (B 1 R and B 2 R) on cell proliferation in human glioblastoma cell lineages. The mRNA expression of B 1 R and B 2 R was verified by RT-qPCR, whereas the effects of kinin agonists (des-Arg 9 -BK and BK) were analyzed by cell counting, MTT assay and annexin-V/PI determination. The PI3K/Akt and ERK1/2 signaling activation was assessed by flow cytometry. Our results demonstrated that both human glioblastoma cell lines U-138MG and U-251MG express functional B 1 R and B 2 R. The proliferative effects induced by the incubation of des-Arg 9 -BK and BK are likely related to the activation of PI3K/Akt and ERK 1/2 pathways. Moreover, the pre-incubation of the selective PI3Kγ blocker AS252424 markedly prevented kinin-induced AKT phosphorylation. Noteworthy, the selective B 1 R and B 2 R antagonists SSR240612 and HOE-140 were able to induce cell death of either lineages, with mixed apoptosis/necrosis characteristics. Taken together, the present results show that activation of B 1 R and B 2 R might contribute to glioblastoma progression in vitro. Furthermore, PI3K/Akt and ERK 1/2 signaling may be a target for adjuvant treatment of glioblastoma with a possible impact on tumor proliferation.
ISSN:0167-594X
1573-7373
DOI:10.1007/s11060-014-1549-4