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MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells

The controversy of adjuvant radiotherapy of meningiomas is at least partially due to the insufficient understanding on meningioma cells' response to irradiation and the shortage of radiosensitivity-promotion methods. MicroRNA-221 and microRNA-222 were identified as critical regulators of radios...

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Autores principales: Zhang, Qing, Song, Lai-Rong, Huo, Xu-Lei, Wang, Liang, Zhang, Guo-Bin, Hao, Shu-Yu, Jia, Hai-Wei, Kong, Chui-Lin, Jia, Wang, Wu, Zhen, Xu, Bai-Nan, Jia, Gui-Jun, Zhang, Jun-Ting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477324/
https://www.ncbi.nlm.nih.gov/pubmed/32983973
http://dx.doi.org/10.3389/fonc.2020.01441
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author Zhang, Qing
Song, Lai-Rong
Huo, Xu-Lei
Wang, Liang
Zhang, Guo-Bin
Hao, Shu-Yu
Jia, Hai-Wei
Kong, Chui-Lin
Jia, Wang
Wu, Zhen
Xu, Bai-Nan
Jia, Gui-Jun
Zhang, Jun-Ting
author_facet Zhang, Qing
Song, Lai-Rong
Huo, Xu-Lei
Wang, Liang
Zhang, Guo-Bin
Hao, Shu-Yu
Jia, Hai-Wei
Kong, Chui-Lin
Jia, Wang
Wu, Zhen
Xu, Bai-Nan
Jia, Gui-Jun
Zhang, Jun-Ting
author_sort Zhang, Qing
collection PubMed
description The controversy of adjuvant radiotherapy of meningiomas is at least partially due to the insufficient understanding on meningioma cells' response to irradiation and the shortage of radiosensitivity-promotion methods. MicroRNA-221 and microRNA-222 were identified as critical regulators of radiosensitivity in several other tumors. However, their effect in meningiomas has yet to be confirmed. Therefore, the malignant meningioma IOMM-Lee cells were adopted, transfected with microRNA-221/222 mimics or inhibitors, and irradiated with different dosages. The effects of radiation and microRNA-221/222 were then assessed in vitro and in vivo. Radiation dose increases and microRNA-221/222 downregulation synergistically inhibited cell proliferation and colony formation, prevented xenograft tumor progression, and promoted apoptosis, but antagonistically regulated cell invasiveness. Pairwise comparisons revealed that only high-dose radiations (6 and 8 Gy) can significantly promote cell invasiveness in comparison with unirradiated counterparts. Further comparisons exhibited that downregulating the microRNA-221/222 expression can reverse this radiation-induced cell invasiveness to a level of untransfected and unirradiated cells only if cells were irradiated with no more than 6 Gy. In addition, this approach can promote IOMM-Lee's radiosensitivity. Meanwhile, we also detected that the dose rate of irradiation affects cell cycle distribution and cell apoptosis of IOMM-Lee. A high dose rate irradiation induces G0/G1 cell cycle arrest and apoptosis-promoting effect. Therefore, for malignant meningiomas, high-dose irradiation can facilitate cell invasiveness significantly. Downregulating the microRNA-221/222 level can reverse the radiation-induced cell invasiveness while enhancing the apoptosis-promoting and proliferation-inhibiting effects of radiation and promoting cell radiosensitivity.
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spelling pubmed-74773242020-09-26 MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells Zhang, Qing Song, Lai-Rong Huo, Xu-Lei Wang, Liang Zhang, Guo-Bin Hao, Shu-Yu Jia, Hai-Wei Kong, Chui-Lin Jia, Wang Wu, Zhen Xu, Bai-Nan Jia, Gui-Jun Zhang, Jun-Ting Front Oncol Oncology The controversy of adjuvant radiotherapy of meningiomas is at least partially due to the insufficient understanding on meningioma cells' response to irradiation and the shortage of radiosensitivity-promotion methods. MicroRNA-221 and microRNA-222 were identified as critical regulators of radiosensitivity in several other tumors. However, their effect in meningiomas has yet to be confirmed. Therefore, the malignant meningioma IOMM-Lee cells were adopted, transfected with microRNA-221/222 mimics or inhibitors, and irradiated with different dosages. The effects of radiation and microRNA-221/222 were then assessed in vitro and in vivo. Radiation dose increases and microRNA-221/222 downregulation synergistically inhibited cell proliferation and colony formation, prevented xenograft tumor progression, and promoted apoptosis, but antagonistically regulated cell invasiveness. Pairwise comparisons revealed that only high-dose radiations (6 and 8 Gy) can significantly promote cell invasiveness in comparison with unirradiated counterparts. Further comparisons exhibited that downregulating the microRNA-221/222 expression can reverse this radiation-induced cell invasiveness to a level of untransfected and unirradiated cells only if cells were irradiated with no more than 6 Gy. In addition, this approach can promote IOMM-Lee's radiosensitivity. Meanwhile, we also detected that the dose rate of irradiation affects cell cycle distribution and cell apoptosis of IOMM-Lee. A high dose rate irradiation induces G0/G1 cell cycle arrest and apoptosis-promoting effect. Therefore, for malignant meningiomas, high-dose irradiation can facilitate cell invasiveness significantly. Downregulating the microRNA-221/222 level can reverse the radiation-induced cell invasiveness while enhancing the apoptosis-promoting and proliferation-inhibiting effects of radiation and promoting cell radiosensitivity. Frontiers Media S.A. 2020-08-25 /pmc/articles/PMC7477324/ /pubmed/32983973 http://dx.doi.org/10.3389/fonc.2020.01441 Text en Copyright © 2020 Zhang, Song, Huo, Wang, Zhang, Hao, Jia, Kong, Jia, Wu, Xu, Jia and Zhang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Zhang, Qing
Song, Lai-Rong
Huo, Xu-Lei
Wang, Liang
Zhang, Guo-Bin
Hao, Shu-Yu
Jia, Hai-Wei
Kong, Chui-Lin
Jia, Wang
Wu, Zhen
Xu, Bai-Nan
Jia, Gui-Jun
Zhang, Jun-Ting
MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title_full MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title_fullStr MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title_full_unstemmed MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title_short MicroRNA-221/222 Inhibits the Radiation-Induced Invasiveness and Promotes the Radiosensitivity of Malignant Meningioma Cells
title_sort microrna-221/222 inhibits the radiation-induced invasiveness and promotes the radiosensitivity of malignant meningioma cells
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477324/
https://www.ncbi.nlm.nih.gov/pubmed/32983973
http://dx.doi.org/10.3389/fonc.2020.01441
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