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Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario

BACKGROUND: Genome-wide sequencing has emerged as a promising strategy for the timely diagnosis of rare diseases, but it is not yet available as a clinical test performed in Canadian diagnostic laboratories. We describe the protocol for evaluating a 2-year pilot project, Genome-wide Sequencing Ontar...

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Autores principales: Hayeems, Robin Z., Marshall, Christian R., Gillespie, Meredith K., Szuto, Anna, Chisholm, Caitlin, Stavropoulos, Dimitri J., Venkataramanan, Viji, Tsiplova, Kate, Sawyer, Sarah, Price, E. Magda, Lau, Lynette, Khan, Reem, Lee, Whiwon, Huang, Lijia, Jarinova, Olga, Ungar, Wendy J., Mendoza-Londono, Roberto, Somerville, Martin J., Boycott, Kym M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: CMA Impact Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9259466/
https://www.ncbi.nlm.nih.gov/pubmed/35609929
http://dx.doi.org/10.9778/cmajo.20210272
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author Hayeems, Robin Z.
Marshall, Christian R.
Gillespie, Meredith K.
Szuto, Anna
Chisholm, Caitlin
Stavropoulos, Dimitri J.
Venkataramanan, Viji
Tsiplova, Kate
Sawyer, Sarah
Price, E. Magda
Lau, Lynette
Khan, Reem
Lee, Whiwon
Huang, Lijia
Jarinova, Olga
Ungar, Wendy J.
Mendoza-Londono, Roberto
Somerville, Martin J.
Boycott, Kym M.
author_facet Hayeems, Robin Z.
Marshall, Christian R.
Gillespie, Meredith K.
Szuto, Anna
Chisholm, Caitlin
Stavropoulos, Dimitri J.
Venkataramanan, Viji
Tsiplova, Kate
Sawyer, Sarah
Price, E. Magda
Lau, Lynette
Khan, Reem
Lee, Whiwon
Huang, Lijia
Jarinova, Olga
Ungar, Wendy J.
Mendoza-Londono, Roberto
Somerville, Martin J.
Boycott, Kym M.
author_sort Hayeems, Robin Z.
collection PubMed
description BACKGROUND: Genome-wide sequencing has emerged as a promising strategy for the timely diagnosis of rare diseases, but it is not yet available as a clinical test performed in Canadian diagnostic laboratories. We describe the protocol for evaluating a 2-year pilot project, Genome-wide Sequencing Ontario, to offer high-quality clinical genome-wide sequencing in Ontario, Canada. METHODS: The Genome-wide Sequencing Ontario protocol was codesigned by the Ontario Ministry of Health, the Hospital for Sick Children in Toronto and the Children’s Hospital of Eastern Ontario in Ottawa. Enrolment of a prospective cohort of patients began on Apr. 1, 2021. Eligible cases with blood samples available for the index case and both parents (i.e., trios) are randomized to receive exome sequencing or genome sequencing. We will collect patient-level data and ascertain costs associated with the laboratory workflow for exome sequencing and genome sequencing. We will compare point estimates for the diagnostic utility and timeliness of exome sequencing and genome sequencing, and we will determine an incremental cost-effectiveness ratio (expressed as the incremental cost of genome sequencing versus exome sequencing per additional patient with a causal variant detected). INTERPRETATION: Findings from this work will provide robust evidence for the diagnostic utility, cost-effectiveness and timeliness of exome sequencing and genome sequencing, and will be disseminated via academic publications and policy briefs. Findings will inform provincial and cross-provincial policy related to the long-term organization, delivery and reimbursement of clinical-grade genome diagnostics for rare disease.
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spelling pubmed-92594662022-07-10 Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario Hayeems, Robin Z. Marshall, Christian R. Gillespie, Meredith K. Szuto, Anna Chisholm, Caitlin Stavropoulos, Dimitri J. Venkataramanan, Viji Tsiplova, Kate Sawyer, Sarah Price, E. Magda Lau, Lynette Khan, Reem Lee, Whiwon Huang, Lijia Jarinova, Olga Ungar, Wendy J. Mendoza-Londono, Roberto Somerville, Martin J. Boycott, Kym M. CMAJ Open Research BACKGROUND: Genome-wide sequencing has emerged as a promising strategy for the timely diagnosis of rare diseases, but it is not yet available as a clinical test performed in Canadian diagnostic laboratories. We describe the protocol for evaluating a 2-year pilot project, Genome-wide Sequencing Ontario, to offer high-quality clinical genome-wide sequencing in Ontario, Canada. METHODS: The Genome-wide Sequencing Ontario protocol was codesigned by the Ontario Ministry of Health, the Hospital for Sick Children in Toronto and the Children’s Hospital of Eastern Ontario in Ottawa. Enrolment of a prospective cohort of patients began on Apr. 1, 2021. Eligible cases with blood samples available for the index case and both parents (i.e., trios) are randomized to receive exome sequencing or genome sequencing. We will collect patient-level data and ascertain costs associated with the laboratory workflow for exome sequencing and genome sequencing. We will compare point estimates for the diagnostic utility and timeliness of exome sequencing and genome sequencing, and we will determine an incremental cost-effectiveness ratio (expressed as the incremental cost of genome sequencing versus exome sequencing per additional patient with a causal variant detected). INTERPRETATION: Findings from this work will provide robust evidence for the diagnostic utility, cost-effectiveness and timeliness of exome sequencing and genome sequencing, and will be disseminated via academic publications and policy briefs. Findings will inform provincial and cross-provincial policy related to the long-term organization, delivery and reimbursement of clinical-grade genome diagnostics for rare disease. CMA Impact Inc. 2022-05-24 /pmc/articles/PMC9259466/ /pubmed/35609929 http://dx.doi.org/10.9778/cmajo.20210272 Text en © 2022 CMA Impact Inc. or its licensors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed in accordance with the terms of the Creative Commons Attribution (CC BY-NC-ND 4.0) licence, which permits use, distribution and reproduction in any medium, provided that the original publication is properly cited, the use is noncommercial (i.e., research or educational use), and no modifications or adaptations are made. See: https://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Research
Hayeems, Robin Z.
Marshall, Christian R.
Gillespie, Meredith K.
Szuto, Anna
Chisholm, Caitlin
Stavropoulos, Dimitri J.
Venkataramanan, Viji
Tsiplova, Kate
Sawyer, Sarah
Price, E. Magda
Lau, Lynette
Khan, Reem
Lee, Whiwon
Huang, Lijia
Jarinova, Olga
Ungar, Wendy J.
Mendoza-Londono, Roberto
Somerville, Martin J.
Boycott, Kym M.
Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title_full Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title_fullStr Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title_full_unstemmed Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title_short Comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, Genome-wide Sequencing Ontario
title_sort comparing genome sequencing technologies to improve rare disease diagnostics: a protocol for the evaluation of a pilot project, genome-wide sequencing ontario
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9259466/
https://www.ncbi.nlm.nih.gov/pubmed/35609929
http://dx.doi.org/10.9778/cmajo.20210272
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