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全基因组测序可从干血斑样本的单个亚打孔中识别出临床相关变异。

Whole-Genome Sequencing Can Identify Clinically Relevant Variants from a Single Sub-Punch of a Dried Blood Spot Specimen.

作者信息

McBride David J, Fielding Claire, Newington Taksina, Vatsiou Alexandra, Fischl Harry, Bajracharya Maya, Thomson Vicki S, Fraser Louise J, Fujita Pauline A, Becq Jennifer, Kingsbury Zoya, Ross Mark T, Moat Stuart J, Morgan Sian

机构信息

Illumina Cambridge Ltd., Cambridge CB21 6DF, UK.

Illumina Inc., San Diego, CA 92122, USA.

出版信息

Int J Neonatal Screen. 2023 Sep 21;9(3):52. doi: 10.3390/ijns9030052.

Abstract

The collection of dried blood spots (DBS) facilitates newborn screening for a variety of rare, but very serious conditions in healthcare systems around the world. Sub-punches of varying sizes (1.5-6 mm) can be taken from DBS specimens to use as inputs for a range of biochemical assays. Advances in DNA sequencing workflows allow whole-genome sequencing (WGS) libraries to be generated directly from inputs such as peripheral blood, saliva, and DBS. We compared WGS metrics obtained from libraries generated directly from DBS to those generated from DNA extracted from peripheral blood, the standard input for this type of assay. We explored the flexibility of DBS as an input for WGS by altering the punch number and size as inputs to the assay. We showed that WGS libraries can be successfully generated from a variety of DBS inputs, including a single 3 mm or 6 mm diameter punch, with equivalent data quality observed across a number of key metrics of importance in the detection of gene variants. We observed no difference in the performance of DBS and peripheral-blood-extracted DNA in the detection of likely pathogenic gene variants in samples taken from individuals with cystic fibrosis or phenylketonuria. WGS can be performed directly from DBS and is a powerful method for the rapid discovery of clinically relevant, disease-causing gene variants.

摘要

干血斑(DBS)采集有助于在世界各地的医疗系统中对多种罕见但非常严重的疾病进行新生儿筛查。可以从DBS样本中获取不同大小(1.5 - 6毫米)的子冲孔,用作一系列生化检测的输入材料。DNA测序工作流程的进展使得全基因组测序(WGS)文库能够直接从外周血、唾液和DBS等输入材料中生成。我们将直接从DBS生成的文库获得的WGS指标与从外周血提取的DNA(此类检测的标准输入材料)生成的指标进行了比较。我们通过改变冲孔数量和大小作为检测的输入材料,探索了DBS作为WGS输入材料的灵活性。我们表明,WGS文库可以成功地从各种DBS输入材料中生成,包括单个直径为3毫米或6毫米的冲孔,并且在检测基因变异的一些重要关键指标上观察到了相当的数据质量。我们观察到,在检测来自囊性纤维化或苯丙酮尿症患者的样本中可能的致病基因变异时,DBS和外周血提取的DNA的性能没有差异。WGS可以直接从DBS进行,并且是快速发现临床相关致病基因变异的有力方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9ba/10532340/560695757006/IJNS-09-00052-g001.jpg

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