Key result
Extended NGS panel confirms FH in 42% of clinical phenotypes and identifies alternative LDL-C causes.
Why the study?
Clinical familial hypercholesterolemia phenotype can be caused by variants in primary FH genes, FH-phenocopy genes, polygenic hypercholesterolemia, or elevated Lp(a), requiring improved genetic diagnostic tools.
Cross-Sectional (n=1,005)
An extended next-generation sequencing panel can identify the genetic cause in a significant proportion of individuals with a clinical FH phenotype, including polygenic hypercholesterolemia and elevated Lp(a) in those without monogenic FH.
Extended NGS may refine FH diagnosis in clinical phenotypes; leaves open whether routine use improves outcomes or cost-effectiveness.
Familial hypercholesterolemia (FH) is a common genetic disorder of lipid metabolism caused by pathogenic/likely pathogenic variants in LDLR, APOB, and PCSK9 genes. Variants in FH-phenocopy genes (LDLRAP1, APOE, LIPA, ABCG5, and ABCG8), polygenic hypercholesterolemia, and hyperlipoprotein (a) [Lp(a)] can also mimic a clinical FH phenotype. We aim to present a new diagnostic tool to unravel the genetic background of clinical FH phenotype. Biochemical and genetic study was performed in 1,005 individuals with clinical diagnosis of FH, referred to the Portuguese FH Study. A next-generation sequencing panel, covering eight genes and eight SNPs to determine LDL-C polygenic risk score and LPA genetic score, was validated, and used in this study. FH was genetically confirmed in 417 index cases: 408 heterozygotes and 9 homozygotes. Cascade screening increased the identification to 1,000 FH individuals, including 11 homozygotes. FH-negative individuals (phenotype positive and genotype negative) have Lp(a) >50 mg/dl (30%), high polygenic risk score (16%), other monogenic lipid metabolism disorders (1%), and heterozygous pathogenic variants in FH-phenocopy genes (2%). Heterozygous variants of uncertain significance were identified in primary genes (12%) and phenocopy genes (7%). Overall, 42% of our cohort was genetically confirmed with FH. In the remaining individuals, other causes for high LDL-C were identified in 68%. Hyper-Lp(a) or polygenic hypercholesterolemia may be the cause of the clinical FH phenotype in almost half of FH-negative individuals. A small part has pathogenic variants in ABCG5/ABCG8 in heterozygosity that can cause hypercholesterolemia and should be further investigated. This extended next-generation sequencing panel identifies individuals with FH and FH-phenocopies, allowing to personalize each person's treatment according to the affected pathway.
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Medeiros et al. (2023) conducted a cross-sectional in Clinical familial hypercholesterolemia phenotype (n=1,005). Next-generation sequencing panel was evaluated on Genetic confirmation of familial hypercholesterolemia. An extended next-generation sequencing panel genetically confirmed FH in 42% of individuals with a clinical phenotype, and identified other causes for high LDL-C in 68% of the remaining individuals.
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