Related Experiment Video
Updated: Jun 17, 2026

A Familial Hypercholesterolemia Human Liver Chimeric Mouse Model Using Induced Pluripotent Stem Cell-derived Hepatocytes
Published on: September 15, 2018
Genetic screening of children for familial hypercholesterolaemia: the VRONI study
Raphael S Schmieder1, Lea D Schlieben2,3, Artem Amosov2,3
1Department of Cardiovascular Disease, German Heart Center TUM University Hospital, Technical University of Munich, Lazarettstr. 36, Munich, 80636, Germany.
Insights
Universal screening for familial hypercholesterolaemia (FH) in children identified a high prevalence of FH-causing variants (1:90). This supports a national pediatric screening program for early intervention.
Area of Science:
- Genetics
- Pediatrics
- Cardiovascular Health
Background:
- Familial hypercholesterolaemia (FH) is a genetic disorder causing high LDL cholesterol.
- The role of genetic testing in universal pediatric screening for FH is not well-defined.
- Early identification and treatment of FH in children are crucial for preventing cardiovascular disease.
Purpose of the Study:
- To investigate a two-step approach for identifying children with FH-causing variants.
- To determine the prevalence of FH-causing variants in a pediatric population through universal screening.
- To evaluate the efficacy of combined biochemical and genetic testing for FH in children.
Main Methods:
- A universal screening program in Southern Germany offered FH screening to children aged 4.8-14.9 years.
- Screening involved biochemical testing for LDL-C and genetic testing for FH-causing variants from fingertip blood.
- A focused panel and gene sequencing were used to identify pathogenic variants.
Main Results:
- Out of 25,431 children screened, 1689 had elevated LDL-C (≥3.36 mmol/L).
- FH-causing variants were identified in 17% of genetically analyzed children, with an overall prevalence of 1:90.
- Adjusted prevalence was 1:163, consistent with large genomic databases.
Conclusions:
- The study found a significantly higher prevalence of FH in children than previously estimated.
- Biochemical screening effectively selects children for genetic testing, with gene sequencing being superior to variant screening.
- The VRONI study demonstrates the feasibility and efficacy of combined biochemical and genetic screening for pediatric FH.
Background And Aims:
The role of genetic testing as part of universal screening programmes for familial hypercholesterolaemia (FH) in children is not well defined. Here, a two-step approach to identify children carrying FH-causing variants was investigated.
Methods:
In this study from Southern Germany, paediatricians were invited to offer FH screening to all children aged 4.8-14.9 years at routine paediatric examinations. The FH screening programme began in September 2020 in Bavaria and has involved up to 480 paediatricians. It included biochemical and genetic testing using 0.2 mL of blood taken from a fingertip. In case of low-density lipoprotein cholesterol (LDL-C) serum concentration ≥3.36 mmol/L (≥130 mg/dL), FH-causing variants were determined in the same sample with a focused panel covering most frequent variants (n = 48) and sequencing of relevant genes.
Results:
Out of 25 431 children screened so far, 1689 children had an LDL-C ≥ 3.36 mmol/L (>130 mg/dL), which defined this concentration as the 93rd percentile. Pathogenic variants were identified by the focused panel in 157 and by next-generation sequencing in 283 children, respectively. While 17% (283/1670) of all genetically analysed children tested positive, the fraction of individuals with FH-causing variants increased across the spectrum of LDL-C serum concentrations from 4.7% (23/492) at 3.36-3.49 mmol/L (130-135 mg/dL) to 78.6% (81/103) above 5.17 mmol/L (200 mg/dL). Overall, the prevalence of FH-causing variants was high (1:90). One reason was a founder variant (n = 63) within the LDLR gene, found 40 times more frequent than European average. The analysis of recruitment data revealed significant ascertainment bias, with lower recruitment rate practices exhibiting higher prevalence. After adjustment for the bias using a generalized linear mixed model, the predicted prevalence was 1 in 163 (0.61%), which is highly consistent with large-scale genomic benchmarks as gnomAD (1:165, n = 622 057) and the UK Biobank (1:176, n = 48 741).
Conclusions:
The prevalence of FH determined in this study is significantly higher than previously published estimates (∼1:250), highlighting the importance of this condition for public health and supporting calls for a national paediatric screening programme, given the availability of effective treatment options. For children between 5 and 15 years, biochemical screening is an effective way to select patients for genetic testing, with sequencing of candidate genes being superior to variant screening. In summary, the VRONI study demonstrates the feasibility and efficacy of a combined biochemical and genetic screening for FH in children.
More Related Videos
05:53Candidate Gene Testing in Clinical Cohort Studies with Multiplexed Genotyping and Mass Spectrometry
Published on: June 21, 2018
05:58Digital Polymerase Chain Reaction Assay for the Genetic Variation in a Sporadic Familial Adenomatous Polyposis Patient Using the Chip-in-a-tube Format
Published on: August 20, 2018
Related Concept Videos
Genetic Screens
Forward genetic screens
Forward or “classical” genetic screens involve creating random mutations in an organism’s DNA using radiation, mutagens, or insertion of additional bases, which result in visible changes...
Pharmacogenomics: Identification of New Drug Targets
Human Genetics
The complex relationship between genetics and psychology is observable through common biological components such...
Principles of Pharmacogenetics: Types of Genetic Variants
Cholesterol: Significance and Regulation
Considering cholesterol and...
Blood Studies for Cardiovascular System III: Serum Lipid Profile
Serum lipids are fats and fatty substances in the blood and are crucial for various bodily functions, including energy storage, cellular structure, and hormone production. Serum lipids consist of cholesterol, triglycerides, and phospholipids.
Cholesterol is a soft, fat-like substance found in all body cells. It is crucial for producing hormones, vitamin D, and substances that aid...