Whole exome and genome sequencing in mendelian disorders: a diagnostic and health economic analysis.


Journal

European journal of human genetics : EJHG
ISSN: 1476-5438
Titre abrégé: Eur J Hum Genet
Pays: England
ID NLM: 9302235

Informations de publication

Date de publication:
10 2022
Historique:
received: 08 10 2021
accepted: 20 07 2022
revised: 01 06 2022
pubmed: 16 8 2022
medline: 14 10 2022
entrez: 15 8 2022
Statut: ppublish

Résumé

Whole genome sequencing (WGS) improves Mendelian disorder diagnosis over whole exome sequencing (WES); however, additional diagnostic yields and costs remain undefined. We investigated differences between diagnostic and cost outcomes of WGS and WES in a cohort with suspected Mendelian disorders. WGS was performed in 38 WES-negative families derived from a 64 family Mendelian cohort that previously underwent WES. For new WGS diagnoses, contemporary WES reanalysis determined whether variants were diagnosable by original WES or unique to WGS. Diagnostic rates were estimated for WES and WGS to simulate outcomes if both had been applied to the 64 families. Diagnostic costs were calculated for various genomic testing scenarios. WGS diagnosed 34% (13/38) of WES-negative families. However, contemporary WES reanalysis on average 2 years later would have diagnosed 18% (7/38 families) resulting in a WGS-specific diagnostic yield of 19% (6/31 remaining families). In WES-negative families, the incremental cost per additional diagnosis using WGS following WES reanalysis was AU$36,710 (£19,407;US$23,727) and WGS alone was AU$41,916 (£22,159;US$27,093) compared to WES-reanalysis. When we simulated the use of WGS alone as an initial genomic test, the incremental cost for each additional diagnosis was AU$29,708 (£15,705;US$19,201) whereas contemporary WES followed by WGS was AU$36,710 (£19,407;US$23,727) compared to contemporary WES. Our findings confirm that WGS is the optimal genomic test choice for maximal diagnosis in Mendelian disorders. However, accepting a small reduction in diagnostic yield, WES with subsequent reanalysis confers the lowest costs. Whether WES or WGS is utilised will depend on clinical scenario and local resourcing and availability.

Identifiants

pubmed: 35970915
doi: 10.1038/s41431-022-01162-2
pii: 10.1038/s41431-022-01162-2
pmc: PMC9553973
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1121-1131

Informations de copyright

© 2022. Crown.

Références

Genet Med. 2019 Nov;21(11):2413-2421
pubmed: 31182824
Bioinformatics. 2015 Aug 15;31(16):2745-7
pubmed: 25851949
NPJ Genom Med. 2016 Jan 13;1:
pubmed: 28567303
Genome Med. 2021 Feb 25;13(1):32
pubmed: 33632298
Nature. 2014 Jul 17;511(7509):344-7
pubmed: 24896178
Genet Med. 2018 Oct;20(10):1122-1130
pubmed: 29446766
Ann Clin Transl Neurol. 2020 Jan;7(1):144-152
pubmed: 31912665
Am J Hum Genet. 2011 Jan 7;88(1):115-20
pubmed: 21211618
Genome Med. 2020 May 27;12(1):48
pubmed: 32460895
Am J Hum Genet. 2012 Oct 5;91(4):597-607
pubmed: 23040492
J Med Genet. 2020 Jul;57(7):479-486
pubmed: 31980565
Hum Mol Genet. 2008 Apr 1;17(7):978-85
pubmed: 18156157
Clin Genet. 2018 Mar;93(3):439-449
pubmed: 28950406
Nat Commun. 2020 Jan 23;11(1):435
pubmed: 31974348
Cell. 2019 Jan 24;176(3):535-548.e24
pubmed: 30661751
Genet Med. 2015 May;17(5):405-24
pubmed: 25741868
Cell. 2009 Feb 20;136(4):777-93
pubmed: 19239895
J Am Coll Cardiol. 2018 Jul 24;72(4):419-429
pubmed: 30025578
Genet Med. 2019 Jan;21(1):114-123
pubmed: 29895855
Genome Res. 2012 Aug;22(8):1525-32
pubmed: 22585873
Nat Genet. 2014 Mar;46(3):310-5
pubmed: 24487276
J Mol Diagn. 2021 Jul;23(7):894-905
pubmed: 33962052
Nature. 2015 Oct 1;526(7571):68-74
pubmed: 26432245
Nat Methods. 2010 Apr;7(4):248-9
pubmed: 20354512
NPJ Genom Med. 2018 Jul 9;3:16
pubmed: 30002876
Genet Med. 2018 Nov;20(11):1328-1333
pubmed: 29565419
Am J Hum Genet. 2010 Sep 10;87(3):418-23
pubmed: 20817137
Am J Hum Genet. 2007 Sep;81(3):559-75
pubmed: 17701901
NPJ Genom Med. 2018 Feb 9;3:6
pubmed: 29449963
Bioinformatics. 2019 Jan 1;35(1):122-125
pubmed: 30561546
Bioinformatics. 2010 Nov 15;26(22):2867-73
pubmed: 20926424
Am J Hum Genet. 2017 Sep 7;101(3):315-325
pubmed: 28886340
Proc Natl Acad Sci U S A. 2015 Apr 28;112(17):5473-8
pubmed: 25827230
PLoS Comput Biol. 2013;9(7):e1003153
pubmed: 23874191
Nat Genet. 2015 Jul;47(7):717-726
pubmed: 25985138
Brief Bioinform. 2013 Mar;14(2):178-92
pubmed: 22517427
Curr Protoc Bioinformatics. 2013 Dec;44:1.23.1-26
pubmed: 25489354
Genet Med. 2018 Apr;20(4):435-443
pubmed: 28771251
Nat Commun. 2017 Jun 12;8:15824
pubmed: 28604674
Nat Protoc. 2009;4(7):1073-81
pubmed: 19561590
Nucleic Acids Res. 2018 Jan 4;46(D1):D1039-D1048
pubmed: 29112736
Genet Med. 2018 Dec;20(12):1564-1574
pubmed: 29595814

Auteurs

Lisa J Ewans (LJ)

St Vincent's Clinical School, University of New South Wales, Sydney, NSW, Australia. lisa.ewans@gmail.com.
Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia. lisa.ewans@gmail.com.
Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia. lisa.ewans@gmail.com.

Andre E Minoche (AE)

St Vincent's Clinical School, University of New South Wales, Sydney, NSW, Australia.
Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia.

Deborah Schofield (D)

Centre for Economic Impacts of Genomic Medicine, Macquarie Business School, Macquarie University, Sydney, NSW, Australia.

Rupendra Shrestha (R)

Centre for Economic Impacts of Genomic Medicine, Macquarie Business School, Macquarie University, Sydney, NSW, Australia.

Clare Puttick (C)

Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia.

Ying Zhu (Y)

The Genetics of Learning Disability Service, Newcastle, NSW, Australia.
Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.

Alexander Drew (A)

Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia.

Velimir Gayevskiy (V)

Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia.

George Elakis (G)

Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.

Corrina Walsh (C)

Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.

Lesley C Adès (LC)

Department of Clinical Genetics, Children's Hospital at Westmead, Sydney, NSW, Australia.
Disciplines of Child and Adolescent Health and Genomic Medicine, University of Sydney, Sydney, NSW, Australia.

Alison Colley (A)

Clinical Genetics Department, Liverpool Hospital, Sydney, NSW, Australia.

Carolyn Ellaway (C)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
Disciplines of Child and Adolescent Health and Genomic Medicine, University of Sydney, Sydney, NSW, Australia.

Carey-Anne Evans (CA)

Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.
Neuroscience Research Australia (NeuRA) and Prince of Wales Clinical School, UNSW, Sydney, Australia.

Mary-Louise Freckmann (ML)

Clinical Genetics, Royal North Shore Hospital, Sydney, NSW, Australia.

Linda Goodwin (L)

Genetics Services, Nepean Hospital, Sydney, NSW, Australia.

Anna Hackett (A)

The Genetics of Learning Disability Service, Newcastle, NSW, Australia.

Benjamin Kamien (B)

Hunter Genetics, Newcastle, NSW, Australia.

Edwin P Kirk (EP)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.
School of Women's and Children's Health, University of New South Wales, Sydney, Australia.

Michelle Lipke (M)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
Queensland Children's Hospital, Brisbane, QLD, Australia.

David Mowat (D)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
School of Women's and Children's Health, University of New South Wales, Sydney, Australia.

Elizabeth Palmer (E)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
The Genetics of Learning Disability Service, Newcastle, NSW, Australia.
School of Women's and Children's Health, University of New South Wales, Sydney, Australia.

Sulekha Rajagopalan (S)

Clinical Genetics Department, Liverpool Hospital, Sydney, NSW, Australia.

Anne Ronan (A)

Hunter Genetics, Newcastle, NSW, Australia.

Rani Sachdev (R)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
School of Women's and Children's Health, University of New South Wales, Sydney, Australia.

William Stevenson (W)

Northern Blood Research Centre, Kolling Institute of Medical Research, University of Sydney, Sydney, NSW, Australia.
Department of Haematology and Transfusion Medicine, Royal North Shore Hospital, Sydney, NSW, Australia.

Anne Turner (A)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia.
School of Women's and Children's Health, University of New South Wales, Sydney, Australia.

Meredith Wilson (M)

Department of Clinical Genetics, Children's Hospital at Westmead, Sydney, NSW, Australia.
Disciplines of Child and Adolescent Health and Genomic Medicine, University of Sydney, Sydney, NSW, Australia.

Lisa Worgan (L)

Clinical Genetics Department, Liverpool Hospital, Sydney, NSW, Australia.

Marie-Christine Morel-Kopp (MC)

Northern Blood Research Centre, Kolling Institute of Medical Research, University of Sydney, Sydney, NSW, Australia.
Department of Haematology and Transfusion Medicine, Royal North Shore Hospital, Sydney, NSW, Australia.

Michael Field (M)

The Genetics of Learning Disability Service, Newcastle, NSW, Australia.

Michael F Buckley (MF)

Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia.

Mark J Cowley (MJ)

St Vincent's Clinical School, University of New South Wales, Sydney, NSW, Australia.
Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia.

Marcel E Dinger (ME)

Kinghorn Centre for Clinical Genomics, Garvan Institute of Medical Research, Sydney, NSW, Australia. m.dinger@unsw.edu.au.
School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, Australia. m.dinger@unsw.edu.au.

Tony Roscioli (T)

Centre for Clinical Genetics, Sydney Children's Hospital, Sydney, NSW, Australia. tony.roscioli@health.nsw.gov.au.
Randwick Genomics Laboratory, NSW Health Pathology, Prince of Wales Hospital, Sydney, NSW, Australia. tony.roscioli@health.nsw.gov.au.
Neuroscience Research Australia (NeuRA) and Prince of Wales Clinical School, UNSW, Sydney, Australia. tony.roscioli@health.nsw.gov.au.

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