EDA2R reflects the acute brain response to cranial irradiation in liquid biopsies.

IF 16.4 1区 医学 Q1 CLINICAL NEUROLOGY Neuro-oncology Pub Date : 2024-09-05 DOI:10.1093/neuonc/noae077
Alejandro Lastra Romero, Thea Seitz, Georgios Alkis Zisiadis, Holli Jeffery, Ahmed M Osman
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Abstract

Background: Cranial radiotherapy is standard of care for high-grade brain tumors and metastases; however, it induces debilitating neurocognitive impairments in cancer survivors, especially children. As the numbers of pediatric brain cancer survivors continue improving, the numbers of individuals developing life-long neurocognitive sequalae are consequently expected to rise. Yet, there are no established biomarkers estimating the degree of the irradiation-induced brain injury at completion of radiotherapy to predict the severity of the expected neurocognitive complications. We aimed to identify sensitive biomarkers associated with brain response to irradiation that can be measured in easily accessible clinical materials, such as liquid biopsies.

Methods: Juvenile mice were subjected to cranial irradiation with 0.5, 1, 2, 4, and 8 Gy. Cerebrospinal fluid (CSF), plasma, and brains were collected at acute, subacute, and subchronic phases after irradiation, and processed for proteomic screens, and molecular and histological analyses.

Results: We found that the levels of ectodysplasin A2 receptor (EDA2R), member of tumor necrosis factor receptor superfamily, increased significantly in the CSF after cranial irradiation, even at lower irradiation doses. The levels of EDA2R were increased globally in the brain acutely after irradiation and decreased over time. EDA2R was predominantly expressed by neurons, and the temporal dynamics of EDA2R in the brain was reflected in the plasma samples.

Conclusions: We propose EDA2R as a promising potential biomarker reflecting irradiation-induced brain injury in liquid biopsies. The levels of EDA2R upon completion of radiotherapy may aid in predicting the severity of IR-induced neurocognitive sequalae at a very early stage after treatment.

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EDA2R 反映了液体活检中大脑对颅脑照射的急性反应。
背景:颅脑放疗是治疗高级别脑肿瘤和转移瘤的标准疗法;然而,这种疗法会导致癌症幸存者,尤其是儿童的神经认知功能受损。随着小儿脑癌幸存者人数的不断增加,预计出现终生神经认知后遗症的人数也会随之增加。然而,目前还没有成熟的生物标志物来估计放疗结束时辐照引起的脑损伤程度,从而预测预期神经认知并发症的严重性。我们的目标是找出与脑部对辐照的反应相关的敏感生物标志物,这些标志物可通过液体活检等易于获取的临床材料进行测量:方法:对幼年小鼠进行 0.5、1、2、4 和 8 Gy 的颅脑辐照。在辐照后的急性、亚急性和亚慢性阶段收集脑脊液(CSF)、血浆和大脑,并进行蛋白质组筛选、分子和组织学分析:结果:我们发现,即使在较低的辐照剂量下,肿瘤坏死因子受体超家族成员外胚层蛋白 A2 受体(EDA2R)的水平在颅脑辐照后的脑脊液中也显著升高。辐照后,大脑中 EDA2R 的水平呈全局性升高,并随时间推移而降低。EDA2R主要由神经元表达,EDA2R在大脑中的时间动态也反映在血浆样本中:结论:我们建议将 EDA2R 作为液体活检中反映辐照诱导的脑损伤的潜在生物标记物。放疗结束后 EDA2R 的水平可能有助于在治疗后的早期阶段预测 IR 引起的神经认知后遗症的严重程度。
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来源期刊
Neuro-oncology
Neuro-oncology 医学-临床神经学
CiteScore
27.20
自引率
6.30%
发文量
1434
审稿时长
3-8 weeks
期刊介绍: Neuro-Oncology, the official journal of the Society for Neuro-Oncology, has been published monthly since January 2010. Affiliated with the Japan Society for Neuro-Oncology and the European Association of Neuro-Oncology, it is a global leader in the field. The journal is committed to swiftly disseminating high-quality information across all areas of neuro-oncology. It features peer-reviewed articles, reviews, symposia on various topics, abstracts from annual meetings, and updates from neuro-oncology societies worldwide.
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