LIVIVO - The Search Portal for Life Sciences

zur deutschen Oberfläche wechseln
Advanced search

Search results

Result 1 - 1 of total 1

Search options

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

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

International journal of neonatal screening

2023  Volume 9, Issue 3

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 ... ...

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.
Language English
Publishing date 2023-09-21
Publishing country Switzerland
Document type Journal Article
ISSN 2409-515X
ISSN (online) 2409-515X
DOI 10.3390/ijns9030052
Database MEDical Literature Analysis and Retrieval System OnLINE

More links

Kategorien

To top