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首页> 外文期刊>Neurosurgery >Stereotactic radiosurgery: adjacent tissue injury and response after high-dose single fraction radiation. Part II: Strategies for therapeutic enhancement, brain injury mitigation, and brain injury repair.
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Stereotactic radiosurgery: adjacent tissue injury and response after high-dose single fraction radiation. Part II: Strategies for therapeutic enhancement, brain injury mitigation, and brain injury repair.

机译:立体定向放射外科:大剂量单次放射后邻近组织的损伤和反应。第二部分:增强治疗,减轻脑损伤和修复脑损伤的策略。

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摘要

In the first part of this series, we reviewed the histological, radiographic, and molecular data gathered regarding the brain parenchymal response to radiosurgery and suggested future studies that could enhance our understanding of the topic. With this article, we begin by addressing methods of potentiating the effect of radiosurgery on target lesions of the central nervous system. Much of the work on potentiating the effects of cranial radiation has been performed in the field of whole-brain radiotherapy. Data from Phase III trials evaluating the efficacy of various agents as radiosensitizers or radioenhancers in whole-brain radiotherapy are reviewed, and trials for investigating certain agents as enhancers of radiosurgery are suggested. The roles of gene therapy and nanotechnology in enhancing the therapeutic efficacy of radiosurgery are then addressed. Focus is then shifted to a discussion of strategies of protecting healthy tissue from the potentially deleterious aspects of the brain's response to radiosurgery that were presented in the first article of this series. Finally, comments are made regarding the role of neural progenitor or stem cells in the repair of radiation-induced brain injury after radiosurgery. The importance of both the role of the extracellular matrix and properly directed axonal regrowth leading to appropriate target reinnervation is highlighted.
机译:在本系列的第一部分中,我们回顾了所收集的有关脑实质对放射外科手术反应的组织学,影像学和分子数据,并提出了可以增强我们对该主题理解的未来研究建议。从本文开始,我们将从解决增强放射外科对中枢神经系统靶病变的作用的方法开始。增强颅脑辐射作用的许多工作已在全脑放射治疗领域进行。回顾了III期试验的数据,该试验评估了各种药物在全脑放射治疗中作为放射增敏剂或放射增强剂的功效,并提出了研究某些药物作为放射外科增强剂的试验。然后讨论了基因治疗和纳米技术在增强放射外科手术治疗功效中的作用。然后,重点转移到本系列第一篇文章中讨论的保护健康组织免受大脑对放射手术反应潜在有害影响的策略的讨论。最后,评论了神经祖细胞或干细胞在放射外科手术后修复辐射诱发的脑损伤中的作用。强调了细胞外基质的作用和导致适当的靶标重新神经支配的正确定向的轴突再生的重要性。

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