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首页> 外文期刊>Nucleic acids research >Using next-generation sequencing for high resolution multiplex analysis of copy number variation from nanogram quantities of DNA from formalin-fixed paraffin-embedded specimens
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Using next-generation sequencing for high resolution multiplex analysis of copy number variation from nanogram quantities of DNA from formalin-fixed paraffin-embedded specimens

机译:使用下一代测序技术对福尔马林固定石蜡包埋的标本中DNA的纳克数量的拷贝数变异进行高分辨率多重分析

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摘要

The use of next-generation sequencing technologies to produce genomic copy number data has recently been described. Most approaches, however, reply on optimal starting DNA, and are therefore unsuitable for the analysis of formalin-fixed paraffin-embedded (FFPE) samples, which largely precludes the analysis of many tumour series. We have sought to challenge the limits of this technique with regards to quality and quantity of starting material and the depth of sequencing required. We confirm that the technique can be used to interrogate DNA from cell lines, fresh frozen material and FFPE samples to assess copy number variation. We show that as little as 5 ng of DNA is needed to generate a copy number karyogram, and follow this up with data from a series of FFPE biopsies and surgical samples. We have used various levels of sample multiplexing to demonstrate the adjustable resolution of the methodology, depending on the number of samples and available resources. We also demonstrate reproducibility by use of replicate samples and comparison with microarray-based comparative genomic hybridization (aCGH) and digital PCR. This technique can be valuable in both the analysis of routine diagnostic samples and in examining large repositories of fixed archival material.
机译:最近已经描述了使用下一代测序技术产生基因组拷贝数数据。但是,大多数方法都对最佳的起始DNA做出了回应,因此不适合用于福尔马林固定石蜡包埋(FFPE)样品的分析,这在很大程度上排除了对许多肿瘤系列的分析。我们已经尝试就起始材料的质量和数量以及所需测序的深度来挑战该技术的局限性。我们确认该技术可用于从细胞系,新鲜冷冻材料和FFPE样品中探查DNA,以评估拷贝数变异。我们显示,仅需要5 ng的DNA即可生成拷贝数核型图,并通过一系列FFPE活检和外科手术样品中的数据进行跟踪。我们已经使用了各种级别的样本多路复用来演示该方法的可调分辨率,具体取决于样本的数量和可用资源。我们还展示了通过使用重复样品并与基于微阵列的比较基因组杂交(aCGH)和数字PCR进行比较的可再现性。该技术在常规诊断样品的分析和检查固定档案材料的大型存储库中都可能有价值。

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