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Current concepts for the combined treatment modality of ionizing radiation with anticancer agents.

机译:电离辐射与抗癌剂联合治疗方式的当前概念。

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In current applied radiobiology, there exists a tremendous effort in basic and translational research to identify novel treatment modalities combining ionizing radiation with anticancer agents. This is mainly due to the highly improved molecular understanding of intrinsic radioresistance and the profiling of cellular stress responses to irradiation during recent years. Ionizing radiation not only damages DNA but also affects multiple cellular components that induce a multi-layered stress response. The treatment responses can be restricted to the individual cell level but might also be part of an intercellular stress communication network. Both DNA damage-induced signaling (which results in cell cycle arrest and induction of the DNA-repair machinery) and also ionizing radiation-induced signal transduction cascades, which are generated at cellular sites distant from and independent of DNA-damage, represent interesting targets for anticancer treatment modalities to sensitize for ionizing radiation. Due tothe lack of molecular knowledge classic radiobiology assembled the cellular and tissue responses into four groups (4 R's of radiotherapy) which describe biological factors influencing the treatment response to fractionated radiotherapy. These classic 4 R's are Repair, Reassortment, Repopulation and Reoxygenation. With the tremendous progress in molecular oncology we now begin to understand theses factors on the molecular level. At the same time this classification may guide modern molecular radiobiologists to identify novel pharmaceuticals and antisignaling agents which can modulate the treatment response to irradiation. In this review we describe current approaches to sensitize tumor cells with novel anticancer agents along the lines of these 4 R's.
机译:在当前的应用放射生物学中,在基础和转化研究中付出了巨大的努力,以鉴定结合电离辐射和抗癌药的新型治疗方式。这主要是由于近年来对分子固有抗辐射性的高度了解,以及细胞对辐射的应激反应的概况。电离辐射不仅会损坏DNA,而且会影响诱导多层应激反应的多种细胞成分。治疗反应可能仅限于单个细胞水平,但也可能是细胞间应激通讯网络的一部分。 DNA损伤诱导的信号传导(导致细胞周期停滞和DNA修复机制的诱导)以及电离辐射诱导的信号转导级联反应(在远离DNA损伤且与DNA损伤无关的细胞位点产生)均代表了有趣的靶标用于抗癌治疗方法以对电离辐射敏感。由于缺乏分子知识,经典的放射生物学将细胞和组织反应分为四组(放射治疗的4 R),它们描述了影响分次放疗的治疗反应的生物学因素。这些经典的4 R是维修,重新分类,重新填充和重新充氧。随着分子肿瘤学的巨大进步,我们现在开始在分子水平上理解这些因素。同时,这种分类可以指导现代分子放射生物学家确定可以调节对辐射的治疗反应的新型药物和抗信号传递剂。在这篇综述中,我们描述了沿着新的抗癌药沿着这4个R的路线致敏肿瘤细胞的当前方法。

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