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离子辐射对海马体的长期影响:与辐射反应相关的 Sonic Hedgehog 通路激活的作用。

Long-Term Effects of Ionizing Radiation on the Hippocampus: Linking Effects of the Sonic Hedgehog Pathway Activation with Radiation Response.

机构信息

Division of Health Protection Technologies, Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), 00123 Rome, Italy.

Physiology Unit, School of Medicine, Rovira I Virgili University (URV), 43007 Reus, Spain.

出版信息

Int J Mol Sci. 2021 Nov 22;22(22):12605. doi: 10.3390/ijms222212605.

Abstract

Radiation therapy represents one of the primary treatment modalities for primary and metastatic brain tumors. Although recent advances in radiation techniques, that allow the delivery of higher radiation doses to the target volume, reduce the toxicity to normal tissues, long-term neurocognitive decline is still a detrimental factor significantly affecting quality of life, particularly in pediatric patients. This imposes the need for the development of prevention strategies. Based on recent evidence, showing that manipulation of the Shh pathway carries therapeutic potential for brain repair and functional recovery after injury, here we evaluate how radiation-induced hippocampal alterations are modulated by the constitutive activation of the Shh signaling pathway in Patched 1 heterozygous mice (). Our results show, for the first time, an overall protective effect of constitutive Shh pathway activation on hippocampal radiation injury. This activation, through modulation of the proneural gene network, leads to a long-term reduction of hippocampal deficits in the stem cell and new neuron compartments and to the mitigation of radio-induced astrogliosis, despite some behavioral alterations still being detected in mice. A better understanding of the pathogenic mechanisms responsible for the neural decline following irradiation is essential for identifying prevention measures to contain the harmful consequences of irradiation. Our data have important translational implications as they suggest a role for Shh pathway manipulation to provide the therapeutic possibility of improving brain repair and functional recovery after radio-induced injury.

摘要

放射治疗是原发性和转移性脑肿瘤的主要治疗方法之一。尽管最近放射技术的进步允许将更高剂量的辐射递送至靶体积,从而降低对正常组织的毒性,但长期神经认知下降仍然是一个不利因素,严重影响生活质量,特别是在儿科患者中。这就需要制定预防策略。基于最近的证据表明,Shh 通路的操纵对损伤后大脑修复和功能恢复具有治疗潜力,我们在这里评估了 Patched 1 杂合子()小鼠中 Shh 信号通路的组成性激活对海马放射性改变的调节作用。我们的结果首次表明,组成性 Shh 通路激活对海马放射性损伤具有整体保护作用。这种激活通过调节神经前体细胞基因网络,导致干细胞和新神经元区室中海马缺陷的长期减少,并减轻放射诱导的星形胶质细胞增生,尽管在 小鼠中仍检测到一些行为改变。更好地了解照射后神经下降的发病机制对于确定预防措施以遏制照射的有害后果至关重要。我们的数据具有重要的转化意义,因为它们表明 Shh 通路的操纵可能具有改善放射诱导损伤后大脑修复和功能恢复的治疗可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4706/8624704/b3959b2902a8/ijms-22-12605-g001.jpg

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