Genetics
Lp(a) and familial hypercholesterolaemia together predict early, severe coronary disease, a Chinese angiography cohort of 8050 patients (Atherosclerosis 2017)
Original title: Significance of lipoprotein(a) levels in familial hypercholesterolemia and coronary artery disease
This study enrolled 8050 patients undergoing coronary angiography to examine how Lp(a) relates to familial hypercholesterolaemia (FH) phenotype, genotype, and coronary artery disease (CAD) risk. Lp(a) rose with increasing likelihood of clinical FH diagnosis, both among patients with Lp(a) hyperlipoproteinaemia (median 517.70 vs 570.98 vs 604.65 mg/L, P<0.001) and without it (median 89.20 vs 99.20 vs 133.67 mg/L, P<0.001); patients with Lp(a) hyperlipoproteinaemia had a higher prevalence of definite or probable FH (6.1% vs 2.4%, P<0.05). No significant Lp(a) difference was seen among FH patients carrying LDLR, LDLR-independent, or no mutations (P>0.05). Multivariate analysis showed Lp(a) and FH phenotype were both significant, synergistic predictors of early-onset and severe CAD, with Lp(a) hyperlipoproteinaemia further raising CAD risk in definite or probable FH patients (all P<0.05). The findings show Lp(a) and FH phenotype act synergistically to predict early-onset, severe coronary disease, regardless of the underlying FH mutation.
Original abstract
Background And Aims: Patients with familial hypercholesterolemia (FH) are often characterized by premature coronary artery disease (CAD) with heterogeneity at onset. The aim of the present study was to investigate the associations of lipoprotein (a) [Lp(a)] with the FH phenotype, genotype and roles of Lp(a) in determining CAD risk among patients with and without FH.
Methods: We enrolled 8050 patients undergoing coronary angiography, from our Lipid clinic. Clinical FH was diagnosed using the Dutch Lipid Clinic Network criteria. Mutational analysis (LDLR, APOB, PCSK9) in definite/probable FH was performed by target exome sequencing.
Results: Lp(a) levels were increased, with a clinical FH diagnosis (unlikely, possible, definite/probable FH) independent of the patients status, with Lp(a)-hyperlipoproteinemia [Lp(a)-HLP] (median 517.70 vs. 570.98 vs. 604.65 mg/L, p < 0.001) or without (median 89.20 vs. 99.20 vs. 133.67 mg/L, p < 0.001). Patients with Lp(a)-HLP had a higher prevalence of definite/probable FH than those without (6.1% vs. 2.4%, p < 0.05). However, no significant difference in Lp(a) was observed in patients with definite/probable FH phenotype carrying LDLR or LDLR-independent (APOB, PCSK9) or neither mutations (p > 0.05). Multivariate analysis showed that Lp(a) and FH phenotype were both significant determinants in predicting the early onset and severity of CAD. Subsequently, patients with Lp(a)-HLP in definite/probable FH increased significantly the CAD risk (all p < 0.05).
Conclusions: Lp(a) levels were higher in patients with FH phenotype than in those without, but no difference were found in FH patients of different mutated backgrounds. Moreover, Lp(a) and FH played a synergistic role in predicting the early onset and severity of CAD.
familial hypercholesterolaemiageneticsrisk prediction
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.