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Published on: September 15, 2018
PCSK9 Mutations in Familial Hypercholesterolemia: from a Groundbreaking Discovery to Anti-PCSK9 Therapies
Petra El Khoury1,2, Sandy Elbitar1,2, Youmna Ghaleb1,2
1LVTS, INSERM U1148, Hôpital Xavier-Bichat, Paris Cedex 18, France.
Insights
The discovery of PCSK9 mutations revolutionized familial hypercholesterolemia (FH) treatment. Anti-PCSK9 antibodies, like evolocumab and alirocumab, significantly lower LDL cholesterol and reduce cardiovascular risk in high-risk patients.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Pharmacology
Background:
- Familial hypercholesterolemia (FH) is a genetic disorder characterized by high LDL cholesterol.
- The discovery of PCSK9 in 2003 marked a significant breakthrough in understanding FH pathogenesis.
- Statins have been the primary treatment, but new therapies are emerging.
Purpose of the Study:
- To review the progression of research on PCSK9 from its discovery to current clinical applications.
- To highlight the development and efficacy of anti-PCSK9 antibodies as a novel therapeutic class.
- To discuss the impact of these antibodies on managing hypercholesterolemia and reducing cardiovascular risk.
Main Methods:
- Literature review of studies on PCSK9 and FH.
- Analysis of clinical trial data for anti-PCSK9 antibodies (evolocumab, alirocumab).
- Examination of regulatory approvals and cardiovascular outcomes.
Main Results:
- Anti-PCSK9 antibodies (evolocumab, alirocumab) approved in 2015 reduce LDL cholesterol by 50-60% when added to statins.
- The FOURIER trial showed a 15-20% reduction in major cardiovascular outcomes with evolocumab in high-risk patients.
- The ODYSSEY OUTCOMES trial results for alirocumab are anticipated.
Conclusions:
- The discovery of PCSK9 mutations has led to a new class of lipid-lowering drugs.
- Anti-PCSK9 antibodies represent a major advancement in treating hypercholesterolemia and preventing cardiovascular events.
- Translational research from genetic discoveries to clinical therapies offers hope for managing cholesterol-related diseases.
Purpose Of Review:
In 2003, Abifadel et al. (Nat. Genet. 34:154-156, 2003) identified PCSK9, encoding proprotein convertase subtilisin/kexin type 9, as the third causal gene for autosomal dominant hypercholesterolemia. This review focuses on the main steps from this major breakthrough in familial hypercholesterolemia (FH) to the latest clinical trials with the anti-PCSK9 antibodies.
Recent Findings:
The year 2015 was remarkable in cardiovascular disease through the field of cholesterol. Nearly 30 years after the discovery of statins, a new class of effective lipid-lowering drugs has emerged: the anti-PCSK9 antibodies. The discovery of the first gain-of-function mutations of PCSK9 in FH rapidly became the center of interest of researchers worldwide. Preclinical and clinical studies launched by pharmaceutical companies led to the first three anti-PCSK9 antibodies, two of which (evolocumab and alirocumab) reduce LDL cholesterol levels by 50-60% and received FDA and European Medicines Agency approvals in 2015 on top of statin therapy. Recently, results of the Further Cardiovascular Outcomes Research With PCSK9 Inhibition in Subjects With Elevated Risk (FOURIER) trial, the outcome trial of evolocumab over 2.2 years, showed a reduction of 15-20% in the risk of major cardiovascular outcomes in high-risk patients receiving statin therapy. Results of ODYSSEY OUTCOMES trial, evaluating the effect of alirocumab in 18,000 patients with established CVD are also eagerly awaited in 2018. The evolution of research on PCSK9, starting from the discovery of the first set of mutations in PCSK9 in FH in 2003, is an amazing example of successful translational research. It shows how rigorous and powered genetic analyses can lead to the discovery of a new class of lipid-lowering drugs that give hope in fighting high cholesterol levels and their cardiovascular complications.
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