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AS1411-Induced Growth Inhibition of Glioma Cells by Up-Regulation of p53 and Down-Regulation of Bcl-2 and Akt1 via Nucleolin

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2016

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Public Library of Science
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Cheng, Ye, Gang Zhao, Siwen Zhang, Fares Nigim, Guangtong Zhou, Zhiyun Yu, Yang Song, Yong Chen, and Yunqian Li. 2016. “AS1411-Induced Growth Inhibition of Glioma Cells by Up-Regulation of p53 and Down-Regulation of Bcl-2 and Akt1 via Nucleolin.” PLoS ONE 11 (12): e0167094. doi:10.1371/journal.pone.0167094. http://dx.doi.org/10.1371/journal.pone.0167094.

Abstract

AS1411 binds nucleolin (NCL) and is the first oligodeoxynucleotide aptamer to reach phase I and II clinical trials for the treatment of several cancers. However, the mechanisms by which AS1411 targets and kills glioma cells and tissues remain unclear. Here we report that AS1411 induces cell apoptosis and cycle arrest, and inhibits cell viability by up-regulation of p53 and down-regulation of Bcl-2 and Akt1 in human glioma cells. NCL was overexpressed in both nucleus and cytoplasm in human glioma U87, U251 and SHG44 cells compared to normal human astrocytes (NHA). AS1411 bound NCL and inhibited the proliferation of glioma cells but not NHA, which was accompanied with up-regulation of p53 and down-regulation of Bcl-2 and Akt1. Moreover, AS1411 treatment resulted in the G2/M cell cycle arrest in glioma cells, which was however abolished by overexpression of NCL. Further, AS1411 induced cell apoptosis, which was prevented by silencing of p53 and overexpression of Bcl-2. In addition, AS1411 inhibited the migration and invasion of glioma cells in an Akt1-dependent manner. Importantly, AS1411 inhibited the growth of glioma xenograft and prolonged the survival time of glioma tumor-bearing mice. These results revealed a promising treatment of glioma by oligodeoxynucleotide aptamer.

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Biological Cultures, Cell Cultures, Cultured Tumor Cells, Glioma Cells, Medicine and Health Sciences, Oncology, Cancer Treatment, Biology and Life Sciences, Cell Biology, Cell Processes, Cell Death, Apoptosis, Cancers and Neoplasms, Neurological Tumors, Glioma, Neurology, Biology and life sciences, Genetics, Gene expression, Gene regulation, Small interfering RNAs, Biochemistry, Nucleic acids, RNA, Non-coding RNA, Cell Cycle and Cell Division, Specimen Preparation and Treatment, Staining, Cell Staining, Messenger RNA

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