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Radiogenomics in the Era of Advanced Radiotherapy

机译:高级放疗时代的辐射素学学

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Most radiogenomics studies investigate how genetic variation can help to explain the differences in early and late radiotherapy toxicity between individuals. The field of radiogenomics in photon beam therapy has grown rapidly in recent years, carving out a unique translational discipline, which has progressed from candidate gene studies to larger scale genome-wide association studies, meta-analyses and now prospective validation studies. Genotyping is increasingly sophisticated and affordable, and whole-genome sequencing may soon become readily available as a diagnostic tool in the clinic. The ultimate aim of radiogenomics research is to tailor treatment to the individual with a test based on a combination of treatment, clinical and genetic factors. This personalisation would allow the greatest tumour control while minimising acute and long-term toxicity. Here we discuss the evolution of the field of radiogenomics with reference to the most recent developments and challenges. (C) 2019 The Royal College of Radiologists. Published by Elsevier Ltd. All rights reserved.
机译:大多数辐射变性研究研究调查遗传变异如何有助于解释个体之间的早期放射疗法毒性的差异。近年来,光子束治疗中的辐射素内测定植物领域已迅速增长,雕刻出独特的翻译学科,该学科从候选基因研究进展到更大规模的基因组 - 宽协会研究,荟萃分析和现在前瞻性验证研究。基因分型越来越复杂,价格实惠,并且整个基因组测序可能很快被作为诊断中的诊断工具变得容易获得。辐射膜学研究的最终目标是根据治疗,临床和遗传因素的组合测定对个体的治疗。这种个性化将允许最大的肿瘤控制,同时最小化急性和长期毒性。在这里,我们参考最新的发展和挑战探讨了辐射素内科学领域的演变。 (c)2019年皇家放射科医生。 elsevier有限公司出版。保留所有权利。

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