Accès ouvert déclaré
2024
article
A multitiered analysis platform for genome sequencing: Design and initial findings of the Australian Genomics Cardiovascular Disorders Flagship
Rachel Austin, Jaye S. Brown, Sarah Casauria, Evanthia O. Madelli, Tessa Mattiske, Tiffany Boughtwood, Alejandro Metke, Andrew M. Davis, Ari Horton, David S. Winlaw, Debjani Das, Magdalena Soka, Eleni Giannoulatou, Emma M. Rath, Eric Haan, Gillian M. Blue, Jitendra K. Vohra, J. Atherton, Karin van Spaendonck‐Zwarts, Kathy Cox, Leslie Burnett, Mathew Wallis, Matilda Haas, Michael C. Quinn, Nicholas Pachter, Nicola Poplawski, Zornitza Stark, Richard D. Bagnall, Robert G. Weintraub, Sarah‐Jane Pantaleo, Sebastian Lunke, Paul De Fazio, Tina Thompson, Paul A. James, Yu‐Chen Chang, Diane Fatkin, Ivan Macciocca, Jodie Ingles, Sally L. Dunwoodie, Chris Semsarian, Lesley C. Adès, A. Juanico Enríquez, Alison McLean, Renee Smyth, Dimithu Alankarage, James W. McNamara, Morgan almog, Vanessa S. Fear, C. Medi, Mohammad Al-Shinnag, Miriam Fine, Raymond W. Sy, Keri Finlay, Di Milnes, Dotti Tang, Denisse Garza, Michael R. Milward, Jessica Taylor, A. Morrish, Shelby Taylor, Chris Barnett, Laura Gongolidis, Jim Morwood, Michel Tchan, Belinda Gray, Helen Mountain, Simon Bodek, Cassie Greer, David Mowat, Jordan Thorpe, Kirsten Boggs, Chai‐Ann Ng, Alison Trainer, Michael Bogwitz, Mathilda Haas, Natalie Nowak, Gunjan Trivedi, Bernadette Hanna, Noelia Nunez Martinez, Giulia Valente, Alessandra Bray, Richard P. Harvey, Monique Ohanian, Marie‐Jo Brion, Janette Hayward, S. S. O'Sullivan, Jaye Brown, Angela Overkov, Kunal Verma, Rob Bryson Richardson, Adam P. Hill, Miranda E. Vidgen, Georgie Hollingsworth, Chirag Patel, Charlotte Burns, Georgina E. Hollway, Mark J. Perrin, Kathryn Waddel-Smith, Michelle Cao, Matthew Perry, Will Carr, Denise Howting, Andreas Pflaumer, Peta Phillips, Meredith Wilson, Heather V. Chalinor, Joanne Isbister, Thuan Phuong, Matilda R. Jackson, Rachel Pope-Couston, Lisa Worgan, Gavin Chapman, Linda Wornham, Theosodia Charitou, Sarah Jane-Pantaleo, Preeti Punni, Kathy H. C. Wu, Belinda Chong, Renée Johnson, Laura Yeates, Felicity Collins, Andrew Kelly, Dominica Zentner, Gemma Correnti, Sarah L. King‐Smith, Sulekha Rajagopalan, Edwin P. Kirk, Hariharan Raju, Fiona Cunningham, Sarah Kummerfeld, Timo Lassman, Matthew Regan, Jason J. Davis, Jonathon Lipton, Jonathan Rogers, Mark Ryan, Sarah A. Sandaradura, M. De Silva, Paul MacIntyre, Nicole Schönrock, Nicola Den Elzen, Paul Scuffham, Sophie Devery, Amali Mallawaarachchi, Julia Dobbins, Julia Mansour, Isabella Sherburn, Ellenore Martin, Mary-Clare Sherlock, Nathan Dwyer, Jacob Mathew, Emma S. Singer, Stefanie Elbracht-Leong, Carla Smerdon, David Elliott, Julie McGaughran, Janine Smith
9Citations signalées, ce qui n’est pas une note de qualité
31Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : au.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Purpose: The Australian Genomics Cardiovascular Disorders Flagship was a national multidisciplinary collaboration. It aimed to investigate the feasibility of genome sequencing (GS) and functional genomics to resolve variants of uncertain significance (VUS) in the clinical management of patients and families with cardiomyopathies, primary arrhythmias, and congenital heart disease (CHD). Methods: Between April 2019 and December 2021, 600 probands meeting cardiovascular disorder criteria from 17 cardiology and genetics clinics across Australia were enrolled in the Flagship and underwent GS. The Flagship adopted a tiered approach to GS analysis. Tier 1 analysis assessed genes with established clinical validity for each cardiovascular condition. Tier 2 analysis assessed lesser-evidenced research-based genes. Tier 3 analysis assessed the functional impact of VUS that remained after tier 1 and tier 2 analysis. Results: Overall, a pathogenic or likely pathogenic variant was identified in 41% of participants with a cardiomyopathy, 40% with an arrhythmia syndrome, and 15% with a familial CHD/CHD+Extra Cardiac Anomalies. A VUS outcome ranged from 13% for arrhythmias to 34% for CHD/CHD+Extra Cardiac Anomalies participants. Tier 2 research analysis identified a likely pathogenic/pathogenic variant for a further 15 participants and a VUS for an additional 15 participants. Conclusion: The Flagship successfully facilitated a model of care that harnesses clinical GS and functional genomics for the resolution of VUS in the clinical setting. This valuable data set can be used to inform clinical practice and facilitate research into the future.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- A multitiered analysis platform for genome sequencing: Design and initial findings of the Australian Genomics Cardiovascular Disorders Flagship
- Date Crossref
- 01/01/2024
- Éditeur
- Elsevier BV
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
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Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Genomics and Rare DiseasesCardiomyopathy and Myosin StudiesCardiac electrophysiology and arrhythmias