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Persistent Activation of the Innate Immune Response in Adult Drosophila Following Radiation Exposure During Larval Development

机译:幼虫发育过程中辐射暴露后,成人果蝇固有免疫反应的持久激活。

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摘要

Cranial radiation therapy (CRT) is an effective treatment for pediatric central nervous system malignancies, but survivors often suffer from neurological and neurocognitive side effects that occur many years after radiation exposure. Although the biological mechanisms underlying these deleterious side effects are incompletely understood, radiation exposure triggers an acute inflammatory response that may evolve into chronic inflammation, offering one avenue of investigation. Recently, we developed a Drosophila model of the neurotoxic side effects of radiation exposure. Here we use this model to investigate the role of the innate immune system in response to radiation exposure. We show that the innate immune response and NF-?B target gene expression is activated in the adult Drosophila brain following radiation exposure during larval development, and that this response is sustained in adult flies weeks after radiation exposure. We also present preliminary data suggesting that innate immunity is radioprotective during Drosophila development. Together our data suggest that activation of the innate immune response may be beneficial initially for survival following radiation exposure but result in long-term deleterious consequences, with chronic inflammation leading to impaired neuronal function and viability at later stages. This work lays the foundation for future studies of how the innate immune response is triggered by radiation exposure and its role in mediating the biological responses to radiation. These studies may facilitate the development of strategies to reduce the deleterious side effects of CRT.
机译:颅骨放射疗法(CRT)是治疗小儿中枢神经系统恶性肿瘤的有效方法,但幸存者通常会遭受放射线照射多年后出现的神经和神经认知副作用。尽管尚未完全理解这些有害副作用的生物学机制,但辐射暴露会触发急性炎症反应,可能演变为慢性炎症,为研究提供了一种途径。最近,我们开发了果蝇辐射暴露的神经毒性副作用的模型。在这里,我们使用这种模型来研究先天免疫系统对辐射暴露的作用。我们表明,在幼虫发育过程中的辐射暴露后,在成人果蝇大脑中激活了先天免疫应答和NF-κB靶基因表达,并且该辐射在辐射暴露后的成年果蝇中得以维持。我们还提出了初步数据,表明在果蝇发育过程中先天免疫具有辐射防护作用。我们的数据加在一起表明,先天免疫应答的激活最初可能对辐射暴露后的存活有益,但会导致长期有害后果,慢性炎症会导致后期神经元功能和生存能力受损。这项工作为未来研究如何通过辐射暴露触发先天性免疫反应及其在介导对辐射的生物学反应中的作用奠定了基础。这些研究可能有助于开发减少CRT有害副作用的策略。

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