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在同基因胶质母细胞瘤小鼠模型中建立和验证射波刀照射

Establishment and Validation of CyberKnife Irradiation in a Syngeneic Glioblastoma Mouse Model.

作者信息

Jelgersma Claudius, Senger Carolin, Kluge Anne Kathrin, Janas Anastasia, Nieminen-Kelhä Melina, Kremenetskaia Irina, Mueller Susanne, Brandenburg Susan, Loebel Franziska, Tinhofer Ingeborg, Conti Alfredo, Budach Volker, Vajkoczy Peter, Acker Gueliz

机构信息

Department of Neurosurgery, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Charitéplatz 1, 10117 Berlin, Germany.

Department of Radiation Oncology, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Augustenburger Platz 1, 13353 Berlin, Germany.

出版信息

Cancers (Basel). 2021 Jul 8;13(14):3416. doi: 10.3390/cancers13143416.

Abstract

CyberKnife stereotactic radiosurgery (CK-SRS) precisely delivers radiation to intracranial tumors. However, the underlying radiobiological mechanisms at high single doses are not yet fully understood. Here, we established and evaluated the early radiobiological effects of CK-SRS treatment at a single dose of 20 Gy after 15 days of tumor growth in a syngeneic glioblastoma-mouse model. Exact positioning was ensured using a custom-made, non-invasive, and trackable frame. One superimposed target volume for the CK-SRS planning was created from the fused tumor volumes obtained from MRIs prior to irradiation. Dose calculation and delivery were planned using a single-reference CT scan. Six days after irradiation, tumor volumes were measured using MRI scans, and radiobiological effects were assessed using immunofluorescence staining. We found that CK-SRS treatment reduced tumor volume by approximately 75%, impaired cell proliferation, diminished tumor vasculature, and increased immune response. The accuracy of the delivered dose was demonstrated by staining of DNA double-strand breaks in accordance with the planned dose distribution. Overall, we confirmed that our proposed setup enables the precise irradiation of intracranial tumors in mice using only one reference CT and superimposed MRI volumes. Thus, our proposed mouse model for reproducible CK-SRS can be used to investigate radiobiological effects and develop novel therapeutic approaches.

摘要

射波刀立体定向放射外科手术(CK-SRS)能精确地将辐射传递至颅内肿瘤。然而,高单次剂量下潜在的放射生物学机制尚未完全明晰。在此,我们在同基因胶质母细胞瘤小鼠模型中,于肿瘤生长15天后,建立并评估了单次剂量20 Gy的CK-SRS治疗的早期放射生物学效应。使用定制的、非侵入性且可追踪的框架确保精确的定位。从照射前MRI获得的融合肿瘤体积创建一个用于CK-SRS规划的叠加靶体积。使用单次参考CT扫描进行剂量计算和照射计划。照射6天后,通过MRI扫描测量肿瘤体积,并使用免疫荧光染色评估放射生物学效应。我们发现CK-SRS治疗使肿瘤体积减少了约75%,损害了细胞增殖,减少了肿瘤血管生成,并增强了免疫反应。根据计划的剂量分布,通过DNA双链断裂染色证明了所输送剂量的准确性。总体而言,我们证实了我们所提出的设置仅使用一次参考CT和叠加的MRI体积就能在小鼠中精确照射颅内肿瘤。因此,我们所提出的用于可重复CK-SRS的小鼠模型可用于研究放射生物学效应并开发新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad42/8303959/69aeda9c4103/cancers-13-03416-g001.jpg

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