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Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells

Glioblastoma multiforme (GBM) is the most prevalent and lethal malignant intracranial tumor in the brain, with very poor prognosis and survival. The epidermal growth factor receptor variant III (EGFRvIII) contributes to increased oncogenicity that does not occur through binding EGFR ligands and inst...

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Autores principales: Zhang, Xingmei, Peng, Li, Liang, Zhiman, Kou, Zhewen, Chen, Yue, Shi, Guangwei, Li, Xiaowen, Liang, Yanling, Wang, Fang, Shi, Yusheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862541/
https://www.ncbi.nlm.nih.gov/pubmed/29499954
http://dx.doi.org/10.1016/j.omtn.2018.01.001
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author Zhang, Xingmei
Peng, Li
Liang, Zhiman
Kou, Zhewen
Chen, Yue
Shi, Guangwei
Li, Xiaowen
Liang, Yanling
Wang, Fang
Shi, Yusheng
author_facet Zhang, Xingmei
Peng, Li
Liang, Zhiman
Kou, Zhewen
Chen, Yue
Shi, Guangwei
Li, Xiaowen
Liang, Yanling
Wang, Fang
Shi, Yusheng
author_sort Zhang, Xingmei
collection PubMed
description Glioblastoma multiforme (GBM) is the most prevalent and lethal malignant intracranial tumor in the brain, with very poor prognosis and survival. The epidermal growth factor receptor variant III (EGFRvIII) contributes to increased oncogenicity that does not occur through binding EGFR ligands and instead occurs through constitutive activation, which enhances glioma tumorigenicity and resistance to targeted therapy. Aptamers are nucleic acids with high affinity and specificity to targets selected by systematic evolution of ligands by exponential enrichment (SELEX), and are usually developed as antagonists of disease-associated factors. Herein, we generated a DNA aptamer U2, targeting U87-EGFRvIII cells, and demonstrated that U2 alters the U87-EGFRvIII cell growth, radiosensitivity, and radiotherapy of glioblastoma cells. We detected U2 and U87-EGFRvIII cells by flow cytometry and confocal microscopy to explore the binding ability of U2 to U87-EGFRvIII cells. Then, we found that aptamer U2 inhibits the proliferation, migration, invasion, and downstream signaling of U87-EGFRvIII cells. Moreover, the U2 aptamer can increase the radiosensitivity of U87-EGFRvIII in vitro and has a better antitumor effect on (188)Re-U2 in vivo. Therefore, the results revealed the promising potential of the U2 aptamer to be a new type of drug candidate and aptamer-targeted drug delivery system for glioblastoma therapy.
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spelling pubmed-58625412018-03-26 Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells Zhang, Xingmei Peng, Li Liang, Zhiman Kou, Zhewen Chen, Yue Shi, Guangwei Li, Xiaowen Liang, Yanling Wang, Fang Shi, Yusheng Mol Ther Nucleic Acids Article Glioblastoma multiforme (GBM) is the most prevalent and lethal malignant intracranial tumor in the brain, with very poor prognosis and survival. The epidermal growth factor receptor variant III (EGFRvIII) contributes to increased oncogenicity that does not occur through binding EGFR ligands and instead occurs through constitutive activation, which enhances glioma tumorigenicity and resistance to targeted therapy. Aptamers are nucleic acids with high affinity and specificity to targets selected by systematic evolution of ligands by exponential enrichment (SELEX), and are usually developed as antagonists of disease-associated factors. Herein, we generated a DNA aptamer U2, targeting U87-EGFRvIII cells, and demonstrated that U2 alters the U87-EGFRvIII cell growth, radiosensitivity, and radiotherapy of glioblastoma cells. We detected U2 and U87-EGFRvIII cells by flow cytometry and confocal microscopy to explore the binding ability of U2 to U87-EGFRvIII cells. Then, we found that aptamer U2 inhibits the proliferation, migration, invasion, and downstream signaling of U87-EGFRvIII cells. Moreover, the U2 aptamer can increase the radiosensitivity of U87-EGFRvIII in vitro and has a better antitumor effect on (188)Re-U2 in vivo. Therefore, the results revealed the promising potential of the U2 aptamer to be a new type of drug candidate and aptamer-targeted drug delivery system for glioblastoma therapy. American Society of Gene & Cell Therapy 2018-01-08 /pmc/articles/PMC5862541/ /pubmed/29499954 http://dx.doi.org/10.1016/j.omtn.2018.01.001 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Zhang, Xingmei
Peng, Li
Liang, Zhiman
Kou, Zhewen
Chen, Yue
Shi, Guangwei
Li, Xiaowen
Liang, Yanling
Wang, Fang
Shi, Yusheng
Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title_full Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title_fullStr Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title_full_unstemmed Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title_short Effects of Aptamer to U87-EGFRvIII Cells on the Proliferation, Radiosensitivity, and Radiotherapy of Glioblastoma Cells
title_sort effects of aptamer to u87-egfrviii cells on the proliferation, radiosensitivity, and radiotherapy of glioblastoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862541/
https://www.ncbi.nlm.nih.gov/pubmed/29499954
http://dx.doi.org/10.1016/j.omtn.2018.01.001
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