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首页> 外文期刊>eLife journal >Rescue of cognitive function following fractionated brain irradiation in a novel preclinical glioma model
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Rescue of cognitive function following fractionated brain irradiation in a novel preclinical glioma model

机译:在新型临床前神经胶质瘤模型中脑部照射后认知功能的恢复

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摘要

More than half of long-term brain tumor survivors develop irreversible cognitive decline that severely affect their quality of life. However, there is no pre-clinical model that allows long-term assessment of cognition, and there is no treatment which ameliorates cognitive deficits in patients. Here, we report a novel glioma mouse model that offers manageable tumor growth and reliable assessment of cognitive functions in a post-treatment manner. Using this model, we found that fractionated whole-brain irradiation (fWBI), but not tumor growth, results in memory deficits. Transient inhibition of CSF-1R during fWBI prolongs survival of glioma-bearing mice and fully prevents fWBI-induced memory deficits. This result suggests that CSF-1R inhibition during radiotherapy can be explored as an approach to improve both survival and cognitive outcomes in patients who will receive fWBI. Taken together, the current study provides a proof of concept of a powerful tool to study radiation-induced cognitive deficits in glioma-bearing animals.
机译:超过一半的长期脑肿瘤幸存者会出现不可逆的认知能力下降,从而严重影响他们的生活质量。但是,尚无临床前模型可以对认知进行长期评估,也没有能够改善患者认知缺陷的治疗方法。在这里,我们报告了一种新型的神经胶质瘤小鼠模型,该模型可在治疗后的方式中提供可控制的肿瘤生长和对认知功能的可靠评估。使用此模型,我们发现全脑照射(fWBI)分级而不是肿瘤生长会导致记忆缺陷。在fWBI期间对CSF-1R的短暂抑制可延长带有神经胶质瘤的小鼠的存活,并完全防止fWBI诱导的记忆缺陷。该结果表明,可以将放疗期间对CSF-1R的抑制作为一种改善将要接受fWBI的患者的生存和认知结局的方法进行探讨。综上所述,当前的研究提供了一种强有力的工具概念的证据,该工具可用于研究辐射引起的神经胶质瘤动物认知功能障碍。

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