Precise, Genotype-First Breast Cancer Prevention: Experience With Transferring Monogenic Findings From a Population Biobank to the Clinical Setting
- Hannes Jürgens,
- Laura Roht,
- Liis Leitsalu,
- Margit Nõukas,
- Marili Palover,
- Tiit Nikopensius
- University of Tartu,
- Tartu University Hospital,
- University of Helsinki,
- North-Estonian Medical Center,
- Antegenes Tartu
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 1-15Journal (Volume, Issue Number)
Frontiers in Genetics (Volume 13)Publication milestones
- Published - 22/07/2022
Publication status
Published - 22/07/2022
ISSN
1664-8021Publication IDs
- ORCID: /0009-0005-8959-4355/work/169304533
- Scopus: 85135435782
Abstract
Although hereditary breast cancer screening and management are well accepted and established in clinical settings, these efforts result in the detection of only a fraction of genetic predisposition at the population level. Here, we describe our experience from a national pilot study (2018–2021) in which 180 female participants of Estonian biobank (of >150,000 participants in total) were re-contacted to discuss personalized clinical prevention measures based on their genetic predisposition defined by 11 breast cancer–related genes. Our results show that genetic risk variants are relatively common in the average-risk Estonian population. Seventy-five percent of breast cancer cases in at-risk subjects occurred before the age of 50 years. Only one-third of subjects would have been eligible for clinical screening according to the current criteria. The participants perceived the receipt of genetic risk information as valuable. Fluent cooperation of project teams supported by state-of-art data management, quality control, and secure transfer can enable the integration of research results to everyday medical practice in a highly efficient, timely, and well-accepted manner. The positive experience in this genotype-first breast cancer study confirms the value of using existing basic genomic data from population biobanks for precise prevention.
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Citations
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Funding Details
This research was funded by the Estonian Research Council RITA program, supported by the European Regional Development Fund in accordance with Directive no. 1.1-2/17/15 and by European Union through the European Regional Development Fund project no. 2014-2020.4.01.15-0012 GENTRANSMED. NT and PP are supported by the EIT Health grant BRIGHT (#220720). KO and TK are supported by Estonian Research Council grant PRG471. NT, MP, MN, TN, AR, and MK are supported by the Estonian Research Council grant PRG555. KF and SK were supported by the Estonian Research Council grant PRG1197.
