Downregulation of PIK3CB by siRNA Suppresses Malignant Glioma Cell Growth In Vitro and In Vivo

Author:

Pu Peiyu1,Kang Chunsheng1,Zhang Zhiyong1,Liu Xiaozhi1,Jiang Hao2

Affiliation:

1. Department of Neurosurgery Tianjin Medical University General Hospital Laboratory of Neuro-Oncology Tianjin Neurological Institute Tianjin 300052 People's Republic of China.

2. Department of Neurology Henry Ford Health Science Center Detroit, MI 48202, USA

Abstract

EGFR overexpression is the most frequent and important molecular event in the development of astrocytic gliomas, and the P13K signaling pathway is one of the most important downstream pathways of EGFR. EGFR and other members of the receptor tyrosine kinases (RTKs) family, such as VEGFR, PDGFR, and IGFR, et cetera, are often overexpressed in most of malignant gliomas and share common downstream signaling pathways. Therefore, it is considered that directly targeting the downstream PI3K pathway may be more effective in blocking multiple inputs. The PIK3CB gene encoding the class 1A PI3K catalytic subunit p110β was selected as the target of therapeutic approach for malignant gliomas in the present study. Human U251 glioblastoma cells with high endogenous p110β expression were transfected with plasmid-based siRNA targeting PIK3CB gene. It was found that downregulation of p110β expression resulted in the suppression of cell proliferation, arrest of cell cycle, reduction of cell invasion, and promotion of cell apoptosis in vitro. In addition, the growth of the subcutaneous U251 glioma in the nude mice treated with siRNA targeting PIK3CB was significantly inhibited. These results demonstrate that PIK3CB overexpression may play an oncogenic role in the PI3K pathway, and the plasmid-based siRNA targeting of PIK3CB is a potential and promising approach for the treatment of malignant gliomas.

Publisher

SAGE Publications

Subject

Cancer Research,Oncology

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