Proton therapy induces a local microglial neuroimmune response

Sobp公司 小胶质细胞 神经炎症 质子 布拉格峰 启动(农业) 高原(数学) 辐照 转录组 神经科学 生物 基因表达 化学 医学 免疫学 炎症 基因 物理 生物化学 核物理学 数学分析 发芽 植物 数学 量子力学
作者
Daniëlle C. Voshart,Myrthe Klaver,Yuting Jiang,Hilmar R. J. van Weering,Fleur van Buuren-Broek,Gideon P. van der Linden,Davide Cinat,Harry Kiewiet,Justin Malimban,Daniel A. Vazquez-Matias,Luiza Reali Nazario,Ayla C. Scholma,Jeffrey Sewdihal,Marc‐Jan van Goethem,Peter van Luijk,Robert P. Coppes,Lara Barazzuol
出处
期刊:Radiotherapy and Oncology [Elsevier BV]
卷期号:193: 110117-110117 被引量:9
标识
DOI:10.1016/j.radonc.2024.110117
摘要

BACKGROUND AND PURPOSE: Although proton therapy is increasingly being used in the treatment of paediatric and adult brain tumours, there are still uncertainties surrounding the biological effect of protons on the normal brain. Microglia, the brain-resident macrophages, have been shown to play a role in the development of radiation-induced neurotoxicity. However, their molecular and hence functional response to proton irradiation remains unknown. This study investigates the effect of protons on microglia by comparing the effect of photons and protons as well as the influence of age and different irradiated volumes. MATERIALS AND METHODS: Rats were irradiated with 14 Gy to the whole brain with photons (X-rays), plateau protons, spread-out Bragg peak (SOBP) protons or to 50 % anterior, or 50 % posterior brain sub-volumes with plateau protons. RNA sequencing, validation of microglial priming gene expression using qPCR and high-content imaging analysis of microglial morphology were performed in the cortex at 12 weeks post irradiation. RESULTS: Photons and plateau protons induced a shared transcriptomic response associated with neuroinflammation. This response was associated with a similar microglial priming gene expression signature and distribution of microglial morphologies. Expression of the priming gene signature was less pronounced in juvenile rats compared to adults and slightly increased in rats irradiated with SOBP protons. High-precision partial brain irradiation with protons induced a local microglial priming response and morphological changes. CONCLUSION: Overall, our data indicate that the brain responds in a similar manner to photons and plateau protons with a shared local upregulation of microglial priming-associated genes, potentially enhancing the immune response to subsequent inflammatory challenges.
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