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颅脑放疗所致认知功能障碍:机制与治疗方法。

Cognitive dysfunction induced by cranial radiotherapy: mechanisms and therapeutic methods.

机构信息

Department of Radiology, Affiliated Hangzhou First People's Hospital, Westlake University School of Medicine, Hangzhou, China.

Department of Radiology, Affiliated Hangzhou First People's Hospital, Westlake University School of Medicine, Hangzhou, China.

出版信息

Brain Res Bull. 2024 Nov;218:111106. doi: 10.1016/j.brainresbull.2024.111106. Epub 2024 Oct 22.

Abstract

Cranial radiotherapy can damage normal brain tissues, inducing cognitive dysfunction in patients. Radiotherapy-induced cognitive dysfunction is associated with hippocampal injury, white matter damage and microvascular injury. In this study, the mechanisms of cognitive dysfunction induced by cranial radiotherapy and combined chemoradiotherapy are reviewed, and the advances in therapeutic methods for radiotherapy-induced brain injury are summarized. The mechanisms of radiotherapy-induced brain injury include a decline of neurogenesis, impairment of neurons and glial cells, vascular injury, oxidative stress and DNA damage, cell death, and inflammatory response. Disruption of the bloodbrain barrier (BBB) increases the exposure of the brain to chemotherapeutic agents, thus exacerbating radiotherapy-induced brain damage. The current methods used to prevent radiotherapy-induced brain injury mainly include precision radiotherapy, stem cell transplantation, and treatment with neuroprotective drugs. The combined application of precision radiotherapy and neuroprotective drugs, including antioxidants, anti-inflammatory agents and other drugs, might exert better neuroprotective effects. To resolve the issues of neuroprotective drugs, such as difficulty in crossing the BBB, nanoenzymes and drug delivery nano-systems could be applied in the future.

摘要

颅部放射治疗会损伤正常脑组织,导致患者认知功能障碍。放射治疗引起的认知功能障碍与海马损伤、白质损伤和微血管损伤有关。本研究综述了颅部放射治疗和放化疗联合治疗引起认知功能障碍的机制,并总结了放射治疗性脑损伤的治疗方法的进展。放射治疗性脑损伤的机制包括神经发生下降、神经元和神经胶质细胞损伤、血管损伤、氧化应激和 DNA 损伤、细胞死亡和炎症反应。血脑屏障(BBB)的破坏会增加大脑暴露于化疗药物的程度,从而加剧放射治疗引起的脑损伤。目前用于预防放射治疗性脑损伤的方法主要包括精确放射治疗、干细胞移植和神经保护药物治疗。精确放射治疗与抗氧化剂、抗炎剂等神经保护药物联合应用可能具有更好的神经保护作用。为了解决神经保护药物难以透过血脑屏障的问题,未来可以应用纳米酶和药物递送纳米系统。

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