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用于福尔马林固定石蜡包埋(FFPE)样本的Illumina多重测序的改良SureSelect靶向富集方案。

Modified SureSelect Target Enrichment Protocol for Illumina Multiplexed Sequencing of FFPE Samples.

作者信息

Rosa-Rosa J M, Caniego-Casas T, Leskela S, Muñoz G, Del Castillo F, Garrido P, Palacios J

机构信息

1CIBER-ONC, Instituto de Salud Carlos III, Madrid, Spain.

2Instituto Ramón y Cajal de Investigación Sanitaria, Madrid, Spain.

出版信息

Biol Proced Online. 2018 Oct 12;20:19. doi: 10.1186/s12575-018-0084-7. eCollection 2018.

Abstract

BACKGROUND

Personalised medicine is nowadays a major objective in oncology. Molecular characterization of tumours through NGS offers the possibility to find possible therapeutic targets in a time- and cost-effective way. However, the low quality and complexity of FFPE DNA samples bring a series of disadvantages for massive parallel sequencing techniques compared to high-quality DNA samples (from blood cells, cell cultures, etc.).

RESULTS

We performed several experiments to understand the behaviour of FFPE DNA samples during the construction of SureSelect libraries. First, we designed a quality checkpoint for FFPE DNA samples based on the quantification of their amplification capability (qcPCR). We observed that FFPE DNA samples can be classified according to DIN value and qcPCR concentration into unusable, or low-quality (LQ) and good-quality (GQ) DNA. For GQ samples, we increased the amount of input DNA to 150 ng and the digestion time to 30 min, whereas for LQ samples, we used 50 ng of DNA as input but we decreased the digestion time to 1 min. In all cases, we increased the cycles of the pre-hyb PCR to 10 but decreased the cycles of the post-hyb PCR to 8. In addition, we confirmed that using half of the volume of reagents can be beneficial. Finally, in order to obtain better results, we designed a decision flow-chart to achieve a seeding concentration of 12-14 pM for MiSeq Reagent Kit v2.

CONCLUSIONS

Our experiments allowed us to unveil the behaviour of low-quality FFPE DNA samples during the construction of SureSelect libraries. Sequencing results showed that, using our modified SureSelect protocol, the final percentage of usable reads for low-quality samples was increased more than three times allowing to reach median depth/million reads values of 76.35. This value is equivalent to ~ 0.9 and ~ 0.7 of the values obtained for good-quality FFPE and high-quality DNA respectively.

摘要

背景

如今,个性化医疗是肿瘤学的一个主要目标。通过下一代测序(NGS)对肿瘤进行分子特征分析,为及时且经济高效地找到潜在治疗靶点提供了可能。然而,与高质量DNA样本(来自血细胞、细胞培养物等)相比,福尔马林固定石蜡包埋(FFPE)DNA样本的质量较低且结构复杂,给大规模平行测序技术带来了一系列不利因素。

结果

我们进行了多项实验,以了解FFPE DNA样本在构建SureSelect文库过程中的表现。首先,我们基于对其扩增能力的定量分析(定量聚合酶链反应,qcPCR),为FFPE DNA样本设计了一个质量检查点。我们观察到,FFPE DNA样本可根据DNA完整性数值(DIN)和qcPCR浓度分为不可用、低质量(LQ)和高质量(GQ)DNA。对于GQ样本,我们将输入DNA的量增加到150 ng,并将消化时间延长至30分钟,而对于LQ样本,我们使用50 ng DNA作为输入,但将消化时间缩短至1分钟。在所有情况下,我们将杂交前PCR的循环次数增加到10次,但将杂交后PCR的循环次数减少到8次。此外,我们证实使用一半体积的试剂可能会有帮助。最后,为了获得更好的结果,我们设计了一个决策流程图,以使MiSeq试剂试剂盒v2达到12 - 14 pM的上样浓度。

结论

我们的实验使我们能够揭示低质量FFPE DNA样本在构建SureSelect文库过程中的表现。测序结果表明,使用我们改进的SureSelect方案,低质量样本的可用 reads 的最终百分比增加了三倍多,使每百万 reads 的中位数深度值达到76.35。该值分别相当于高质量FFPE和高质量DNA样本所获值的约0.9倍和0.7倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3480/6182866/4cdbe47067d2/12575_2018_84_Fig1_HTML.jpg

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