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Cited 3 time in webofscience Cited 3 time in scopus
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Rapid Targeted Sequencing Using Dried Blood Spot Samples for Patients With Suspected Actionable Genetic Diseasesopen access

Authors
Kim, Man JinKim, Soo YeonLee, Jin SookKang, SanggooPark, Lae-JeongChoi, WooyongJung, Ju YeolKim, TaehyungPark, Sung SupKo, Jung MinSeong, Moon-WooChae, Jong Hee
Issue Date
May-2023
Publisher
KOREAN SOC LABORATORY MEDICINE
Keywords
Neonatal screening; High-throughput nucleotide sequencing; Metabolism; In-born errors; Dried blood spot
Citation
ANNALS OF LABORATORY MEDICINE, v.43, no.3, pp.280 - 289
Journal Title
ANNALS OF LABORATORY MEDICINE
Volume
43
Number
3
Start Page
280
End Page
289
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/86768
DOI
10.3343/alm.2023.43.3.280
ISSN
2234-3806
Abstract
Background: New genome sequencing technologies with enhanced diagnostic efficiency have emerged. Rapid and timely diagnosis of treatable rare genetic diseases can alter their medical management and clinical course. However, multiple factors, including ethi-cal issues, must be considered. We designed a targeted sequencing platform to avoid eth-ical issues and reduce the turnaround time.Methods: We designed an automated sequencing platform using dried blood spot sam-ples and a NEOseq_ACTION panel comprising 254 genes associated with Mendelian dis-eases having curable or manageable treatment options. Retrospective validation was per-formed using data from 24 genetically and biochemically confirmed patients. Prospective validation was performed using data from 111 patients with suspected actionable genetic diseases.Results: In prospective clinical validation, 13.5% patients presented with medically ac-tionable diseases, including short-or medium-chain acyl-CoA dehydrogenase deficiencies (N= 6), hyperphenylalaninemia (N=2), mucopolysaccharidosis type IVA (N= 1), alpha thalassemia (N= 1), 3-methylcrotonyl-CoA carboxylase 2 deficiency (N= 1), propionic aci-demia (N= 1), glycogen storage disease, type IX(a) (N=1), congenital myasthenic syn-drome (N= 1), and citrullinemia, type II (N= 1). Using the automated analytic pipeline, the turnaround time from blood collection to result reporting was <4 days.Conclusions: This pilot study evaluated the possibility of rapid and timely diagnosis of treat-able rare genetic diseases using a panel designed by a multidisciplinary team. The auto-mated analytic pipeline maximized the clinical utility of rapid targeted sequencing for med-ically actionable genes, providing a strategy for appropriate and timely treatment of rare genetic diseases.
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