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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Systemic effects of fractionated, whole-brain irradiation in young adult and aging rats
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Systemic effects of fractionated, whole-brain irradiation in young adult and aging rats

机译:分次全脑照射对成年和衰老大鼠的全身作用

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摘要

Cranial irradiation is a critical and effective treatment for primary brain tumors and metastases. Unfortunately, most patients who are treated and survive for more than a few months develop neural and cognitive problems as the result of radiation-induced normal tissue injury. The neurobiological mechanisms underlying these cognitive deficits remain largely unknown and there are no validated treatments to prevent or ameliorate them; thus, there is a significant and continuing need for preclinical studies in animal models. Investigations from several laboratories have demonstrated neurobiological changes after cranial irradiation in rodents. To date, however, experimental studies in animal models have included little assessment of the systemic effects of cranial irradiation, despite evidence from the clinic that cranial irradiation results in changes throughout the body and recognition that systemic responses may influence the development of neural and cognitive deficits. This study evaluated systemic effects of clinically relevant, fractionated whole-brain irradiation in adult rats and demonstrates effects on the growth hormone/insulin-like growth factor-I axis, which may contribute to the development of neural changes. These and other systemic responses are important to consider in ongoing efforts to understand the mechanisms of radiation-induced normal tissue injury.
机译:颅骨照射是治疗原发性脑部肿瘤和转移的关键和有效方法。不幸的是,大多数接受治疗并存活数月以上的患者由于辐射诱发的正常组织损伤而出现神经和认知问题。造成这些认知缺陷的神经生物学机制仍然未知,也没有有效的方法可以预防或改善这些缺陷。因此,对动物模型的临床前研究存在巨大且持续的需求。来自几个实验室的研究表明,在啮齿类动物颅内照射后,神经生物学发生了变化。然而,迄今为止,尽管临床上有证据表明颅骨照射会导致全身变化,并且认识到全身反应可能影响神经和认知功能障碍的发展,但动物模型的实验研究几乎没有评估颅骨照射的全身作用。 。这项研究评估了临床相关的成年大鼠全脑分次照射的全身效果,并证明了其对生长激素/胰岛素样生长因子-I轴的影响,这可能有助于神经变化的发展。在理解辐射引起的正常组织损伤的机制的持续努力中,必须考虑这些和其他全身反应。

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