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Updated: Jan 1, 2026

A Familial Hypercholesterolemia Human Liver Chimeric Mouse Model Using Induced Pluripotent Stem Cell-derived Hepatocytes
Published on: September 15, 2018
Familial hypercholesterolemia and elevated lipoprotein(a): double heritable risk and new therapeutic opportunities
A Vuorio1,2, G F Watts3,4, W J Schneider5
1From the, Mehiläinen Airport Health Centre, Vantaa, Finland.
Insights
Elevated lipoprotein(a) [Lp(a)] significantly increases cardiovascular risk, especially in familial hypercholesterolemia (HeFH) patients. Novel therapies targeting Lp(a) offer a promising new approach to reduce this risk beyond statins.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Pharmacology
Background:
- Elevated plasma lipoprotein(a) [Lp(a)] is a significant risk factor for atherosclerotic cardiovascular disease (ASCVD).
- Familial hypercholesterolemia (HeFH) involves elevated LDL-cholesterol (LDL-C) from birth, with 30-50% of patients also having high Lp(a).
- The combined burden of high LDL and Lp(a) accelerates ASCVD in HeFH patients.
Purpose of the Study:
- To review the role of Lp(a) in ASCVD risk, particularly in HeFH.
- To discuss the limitations of current HeFH treatments (statins) in addressing Lp(a).
- To highlight emerging RNA-based therapies for Lp(a) reduction.
Main Methods:
- Review of existing evidence on Lp(a) and ASCVD.
- Analysis of Lp(a) levels in HeFH patients.
- Discussion of novel Lp(a)-lowering therapeutic strategies.
Main Results:
- Lp(a) contributes to atherosclerosis via cholesterol transport and proinflammatory oxidized phospholipids.
- Statins do not reduce Lp(a) levels.
- RNA-based therapies show potential to lower Lp(a) by up to 90%.
Conclusions:
- Targeting Lp(a) represents a significant advancement in managing ASCVD risk in HeFH.
- Future outcome trials are crucial to establish the safety and cost-effectiveness of Lp(a)-lowering therapies.
- These therapies may offer superior cardiovascular risk reduction in HeFH compared to LDL-C lowering alone.
Abstract:
There is compelling evidence that the elevated plasma lipoprotein(a) [Lp(a)] levels increase the risk of atherosclerotic cardiovascular disease (ASCVD) in the general population. Like low-density lipoprotein (LDL) particles, Lp(a) particles contain cholesterol and promote atherosclerosis. In addition, Lp(a) particles contain strongly proinflammatory oxidized phospholipids and a unique apoprotein, apo(a), which promotes the growth of an arterial thrombus. At least one in 250 individuals worldwide suffer from the heterozygous form of familial hypercholesterolemia (HeFH), a condition in which LDL-cholesterol (LDL-C) is significantly elevated since birth. FH-causing mutations in the LDL receptor gene demonstrate a clear gene-dosage effect on Lp(a) plasma concentrations and elevated Lp(a) levels are present in 30-50% of patients with HeFH. The cumulative burden of two genetically determined pro-atherogenic lipoproteins, LDL and Lp(a), is a potent driver of ASCVD in HeFH patients. Statins are the cornerstone of treatment of HeFH, but they do not lower the plasma concentrations of Lp(a). Emerging therapies effectively lower Lp(a) by as much as 90% using RNA-based approaches that target the transcriptional product of the LPA gene. We are now approaching the dawn of an era, in which permanent and significant lowering of the high cholesterol burden of HeFH patients can be achieved. If outcome trials of novel Lp(a)-lowering therapies prove to be safe and cost-effective, they will provide additional risk reduction needed to effectively treat HeFH and potentially lower the CVD risk in these high-risk patients even more than currently achieved with LDL-C lowering alone.
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