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Integrative radiation systems biology

机译:综合辐射系统生物学

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摘要

Maximisation of the ratio of normal tissue preservation and tumour cell reduction is the main concept of radiotherapy alone or combined with chemo-, immuno- or biologically targeted therapy. The foremost parameter influencing this ratio is radiation sensitivity and its modulation towards a more efficient killing of tumour cells and a better preservation of normal tissue at the same time is the overall aim of modern therapy schemas. Nevertheless, this requires a deep understanding of the molecular mechanisms of radiation sensitivity in order to identify its key players as potential therapeutic targets. Moreover, the success of conventional approaches that tried to statistically associate altered radiation sensitivity with any molecular phenotype such as gene expression proofed to be somewhat limited since the number of clinically used targets is rather sparse. However, currently a paradigm shift is taking place from pure frequentistic association analysis to the rather holistic systems biology approach that seeks to mathematically model the system to be investigated and to allow the prediction of an altered phenotype as the function of one single or a signature of biomarkers. Integrative systems biology also considers the data from different molecular levels such as the genome, transcriptome or proteome in order to partially or fully comprehend the causal chain of molecular mechanisms. An example for the application of this concept currently carried out at the Clinical Cooperation Group “Personalized Radiotherapy in Head and Neck Cancer” of the Helmholtz-Zentrum München and the LMU Munich is described. This review article strives for providing a compact overview on the state of the art of systems biology, its actual challenges, potential applications, chances and limitations in radiation oncology research working towards improved personalised therapy concepts using this relatively new methodology.
机译:正常组织保存和肿瘤细胞减少的比例最大化是单独或与化学,免疫或生物学靶向治疗相结合的放射治疗的主要概念。影响该比例的最重要参数是放射敏感性,其对更有效杀死肿瘤细胞和同时更好地保存正常组织的调节是现代治疗方案的总体目标。然而,这需要深入了解辐射敏感性的分子机制,以便确定其主要参与者为潜在的治疗靶标。此外,由于临床使用靶标的数量相当稀少,试图将改变的辐射敏感性与任何分子表型如基因表达进行统计学关联的常规方法的成功被证明是有限的。然而,目前正在发生从纯粹的频繁关联分析到整体系统生物学方法的范式转变,该方法试图以数学方式对要研究的系统进行建模,并允许根据单个特征或特征的变化来预测改变的表型。生物标志物。整合系统生物学还考虑来自不同分子水平的数据,例如基因组,转录组或蛋白质组,以部分或完全理解分子机制的因果链。描述了目前在Helmholtz-ZentrumMünchen和LMU Munich的临床合作小组“头颈癌的个体化放射治疗”中应用该概念的示例。这篇综述文章旨在提供系统生物学的最新概况,其实际挑战,潜在应用,放射肿瘤学研究的机会和局限性,以使用这种相对较新的方法来改进个性化治疗概念。

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