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Molecular Mechanisms and Treatment of Radiation-Induced Lung Fibrosis

机译:放射性肺纤维化的分子机制与治疗

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摘要

Radiation-induced lung fibrosis (RILF) is a severe side effect of radiotherapy in lung cancer patients that presents as a progressive pulmonary injury combined with chronic inflammation and exaggerated organ repair. RILF is a major barrier to improving the cure rate and well-being of lung cancer patients because it limits the radiation dose that is required to effectively kill tumor cells and diminishes normal lung function. Although the exact mechanism is unclear, accumulating evidence suggests that various cells, cytokines and regulatory molecules are involved in the tissue reorganization and immune response modulation that occur in RILF. In this review, we will summarize the general symptoms, diagnostics, and current understanding of the cells and molecular factors that are linked to the signaling networks implicated in RILF. Potential approaches for the treatment of RILF will also be discussed. Elucidating the key molecular mediators that initiate and control the extent of RILF in response to therapeutic radiation may reveal additional targets for RILF treatment to significantly improve the efficacy of radiotherapy for lung cancer patients.
机译:放射诱发的肺纤维化(RILF)是肺癌患者放疗的严重副作用,表现为进行性肺损伤并伴有慢性炎症和过度的器官修复。 RILF是提高肺癌患者治愈率和幸福感的主要障碍,因为它限制了有效杀死肿瘤细胞并削弱正常肺功能所需的放射剂量。尽管确切的机制尚不清楚,但是越来越多的证据表明,各种细胞,细胞因子和调节分子都参与了RILF中发生的组织重组和免疫应答调节。在这篇综述中,我们将总结与RILF牵连的信号网络相关的细胞和分子因素的一般症状,诊断和当前的了解。还将讨论治疗RILF的潜在方法。阐明响应治疗性放射而引发和控制RILF程度的关键分子介体,可能会揭示RILF治疗的其他靶点,从而显着提高肺癌患者放射治疗的疗效。

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