ArticleJournal of translational medicine2025
A genomic strategy for precision medicine in rare diseases: integrating customized algorithms into clinical practice.
Article in Journal of translational medicine, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Genomic Strategies in Pediatric Care: Addressing Rare Diseases in Children.Children (Basel, Switzerland) · 2026Review
- Characterization of individuals with skeletal dysplasia at a referral center in Brazil.Journal of community genetics · 2026Article
- Special Issue "Molecular Progression in Genome-Related Diseases".International journal of molecular sciences · 2026Article
- Five-year Incidence Trends and the Status of Major Rare Diseases in 2023 in the 「Annual Report on the Rare Disease Patients in Korea」.Public health weekly report · 2026Article
- Integrating Artificial Intelligence with Global Genomic Resources: A Narrative Review of Implications for Precision Medicine.Journal of multidisciplinary healthcare · 2026Review
- Combination of next-generation sequencing and traditional examinations for identifyingWorld journal of clinical cases · 2025Article
- New genetic diagnoses for inherited retinal dystrophies by integrating splicing tools into NGS pipelines.NPJ genomic medicine · 2025Article
- Trusted partners, community priorities, and data protections: requirements for precision medicine research with Alaska Native peoples.Journal of community genetics · 2025Article
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Authors and funding
14 authors.
Funding
Abstract
backgroundDespite the use of Next-Generation Sequencing (NGS) as the gold standard for the diagnosis of rare diseases, its clinical implementation has been challenging, limiting the cost-effectiveness of NGS and the understanding, control and safety essential for decision-making in clinical applications. Here, we describe a personalized NGS-based strategy integrating precision medicine into a public healthcare system and its implementation in the routine diagnosis process during a five-year pilot program.
methodsOur approach involved customized probe designs, the generation of virtual panels and the development of a personalized medicine module (PMM) for variant prioritization. This strategy was applied to 6500 individuals including 6267 index patients and 233 NGS-based carrier screenings.
resultsCausative variants were identified in 2061 index patients (average 32.9%, ranging from 12 to 62% by condition). Also, 131 autosomal-recessive cases could be partially genetically diagnosed. These results led to over 5000 additional studies including carrier, prenatal and preimplantational tests or pharmacological and gene therapy treatments.
conclusionThis strategy has shown promising improvements in the diagnostic rate, facilitating timely diagnosis and gradually expanding our services portfolio for rare diseases. The steps taken towards the integration of clinical and genomic data are opening new possibilities for conducting both retrospective and prospective healthcare studies. Overall, this study represents a major milestone in the ongoing efforts to improve our understanding and clinical management of rare diseases, a crucial area of medical research and care.
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