M2 macrophages are more resistant than M1 macrophages following radiation therapy in the context of glioblastoma

抗辐射性 放射治疗 体内 电离辐射 胶质母细胞瘤 癌症研究 表型 人口 背景(考古学) 医学 辐射敏感性 生物 免疫学 内科学 物理 辐照 遗传学 基因 古生物学 核物理学 环境卫生
作者
M.M. Leblond,Elodie A. Pérès,Charly Hélaine,Aurélie N. Gérault,Damien Moulin,Clément Anfray,Didier Divoux,Edwige Petit,Myriam Bernaudin,Samuel Valable
出处
期刊:Oncotarget [Impact Journals LLC]
卷期号:8 (42): 72597-72612 被引量:106
标识
DOI:10.18632/oncotarget.19994
摘要

// Marine M. Leblond 1 , Elodie A. Pérès 1 , Charly Helaine 1 , Aurélie N. Gérault 1 , Damien Moulin 1 , Clément Anfray 1 , Didier Divoux 1 , Edwige Petit 1 , Myriam Bernaudin 1 and Samuel Valable 1 1 Normandie Université, UNICAEN, CEA, CNRS, ISTCT/CERVOxy Group, 14000 Caen, France Correspondence to: Samuel Valable, email: valable@cyceron.fr Keywords: macrophages, irradiation, glioblastoma, radioresistance, phenotypic selection Received: December 21, 2016      Accepted: July 23, 2017      Published: August 07, 2017 ABSTRACT In some highly inflammatory tumors, such as glioblastoma (GB), macrophages (MΦ) represent the most abundant population of reactive cells. MΦ, initially denoted as M0 MΦ, can be polarized into two further phenotypes: the antitumor M1 MΦ, and the protumor M2 MΦ. The three phenotypes can reside simultaneously in the tumor mass and various external factors may influence MΦ polarization. Radiotherapy is a common modality of cancer treatment aiming to target tumor cells. However, the specific effects of X-ray radiation on the inflammatory cells are, so far, controversial and not fully understood. In the present investigation, we have first analyzed, in vivo , the effect of X-ray radiation on MΦ present in GB tumors. We have observed a decrease in MΦ number paralleled by an increase in the proportion of M2 MΦ. To understand this phenomenon, we then evaluated, in vitro , the effects of X-rays on the MΦ phenotypes and survival. We have found that X-ray radiation failed to modify the phenotype of the different MΦ. However, M1 MΦ were more sensitive to ionizing radiation than M2 MΦ, both in normoxia and in hypoxia, which could explain the in vivo observations. To conclude, M2 MΦ are more radioresistant than M0 and M1 MΦ and the present study allows us to propose that X-ray radiotherapy could contribute, along with other phenomena, to the increased density in the protumor M2 MΦ in GB.

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