Genome Sciences Centre, BC Cancer Research Centre, 675 West 10th Avenue, Vancouver, British Colombia V5Z 1L3, Canada.
Nat Rev Genet. 2013 May;14(5):321-32. doi: 10.1038/nrg3445.
Discoveries from cancer genome sequencing have the potential to translate into advances in cancer prevention, diagnostics, prognostics, treatment and basic biology. Given the diversity of downstream applications, cancer genome-sequencing studies need to be designed to best fulfil specific aims. Knowledge of second-generation cancer genome-sequencing study design also facilitates assessment of the validity and importance of the rapidly growing number of published studies. In this Review, we focus on the practical application of second-generation sequencing technology (also known as next-generation sequencing) to cancer genomics and discuss how aspects of study design and methodological considerations - such as the size and composition of the discovery cohort - can be tailored to serve specific research aims.
癌症基因组测序的发现有可能转化为癌症预防、诊断、预后、治疗和基础生物学的进展。鉴于下游应用的多样性,癌症基因组测序研究需要设计以最好地实现特定目标。对第二代癌症基因组测序研究设计的了解也有助于评估快速增长的已发表研究的有效性和重要性。在这篇综述中,我们专注于第二代测序技术(也称为下一代测序)在癌症基因组学中的实际应用,并讨论如何调整研究设计和方法学考虑的各个方面(例如发现队列的大小和组成)以满足特定的研究目的。