Population-based screening in children for early diagnosis and treatment of familial hypercholesterolemia: design of the VRONI study

Author:

Sanin Veronika1ORCID,Schmieder Raphael1,Ates Sara1,Schlieben Lea Dewi23,Wiehler Jens4,Sun Ruoyu4,Decker Manuela1,Sander Michaela5,Holdenrieder Stefan5,Kohlmayer Florian6,Friedmann Anna7,Mall Volker7,Feiler Therese8,Dreßler Arne8,Strom Tim M2,Prokisch Holger23,Meitinger Thomas29,von Scheidt Moritz19ORCID,Koenig Wolfgang19ORCID,Leipold Georg10,Schunkert Heribert19,

Affiliation:

1. Department of Cardiology, Deutsches Herzzentrum München, Technische Universität München , Munich, Germany

2. School of Medicine, Institute of Human Genetics, Technische Universität München , Munich, Germany

3. Department Computational Health, Institute of Neurogenomics, Helmholtz Zentrum München , Munich, Germany

4. BioM Biotech Cluster Development GmbH , Martinsried, Germany

5. Institute of Laboratory Medicine, Deutsches Herzzentrum München, Technische Universität München , Munich, Germany

6. Bitcare GmbH , Munich, Germany

7. Department of Pediatrics, Child and Adolescent Psychosomatics, Technische Universität München , Munich, Germany

8. Department of Systematic Theology and Ethics, Ludwig-Maximilians-Universität München , Munich, Germany

9. Deutsches Zentrum für Herz- und Kreislauferkrankungen (DZHK), Partner Site Munich Heart Alliance , Munich, Germany

10. Professional Association of Pediatricians (BVKJ) of Bavaria , Munich, Germany

Abstract

Abstract Background Heterozygous familial hypercholesterolemia (FH) represents the most frequent monogenic disorder with an estimated prevalence of 1:250 in the general population. Diagnosis during childhood enables early initiation of preventive measures, reducing the risk of severe consecutive atherosclerotic manifestations. Nevertheless, population-based screening programs for FH are scarce. Methods In the VRONI study, children aged 5–14 years in Bavaria are invited to participate in an FH screening program during regular pediatric visits. The screening is based on low-density lipoprotein cholesterol measurements from capillary blood. If exceeding 130 mg/dl (3.34 mmol/l), i.e. the expected 95th percentile in this age group, subsequent molecular genetic analysis for FH is performed. Children with FH pathogenic variants enter a registry and are treated by specialized pediatricians. Furthermore, qualified training centers offer FH-focused training courses to affected families. For first-degree relatives, reverse cascade screening is recommended to identify and treat affected family members. Results Implementation of VRONI required intensive prearrangements for addressing ethical, educational, data safety, legal and organizational aspects, which will be outlined in this article. Recruitment started in early 2021, within the first months, more than 380 pediatricians screened over 5200 children. Approximately 50 000 children are expected to be enrolled in the VRONI study until 2024. Conclusions VRONI aims to test the feasibility of a population-based screening for FH in children in Bavaria, intending to set the stage for a nationwide FH screening infrastructure. Furthermore, we aim to validate genetic variants of unclear significance, detect novel causative mutations and contribute to polygenic risk indices (DRKS00022140; August 2020).

Funder

Bavarian State Ministry of Health and Care

DigiMed Bayern

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health

Reference40 articles.

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