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Updated: Aug 14, 2026

Isolation and Analysis of Plasma Lipoproteins by Ultracentrifugation
Published on: January 28, 2021
Novel Lipoprotein (a) Therapies: A Comprehensive Review
Ugochukwu Ebubechukwu1,2, Onyinye Ugoala3, Rameen Shahid4
1Department of Medicine, SUNY Downstate Health Sciences University, Brooklyn, NY, USA.
Insights
New RNA-based therapies show significant potential for lowering lipoprotein(a) [Lp(a)], a key cardiovascular risk factor. Late-stage trials are underway for antisense oligonucleotides, siRNA drugs, and oral inhibitors, with results expected soon.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Pharmacology
Background:
- Lipoprotein(a) [Lp(a)] is a significant, heritable risk factor for atherosclerotic cardiovascular disease and calcific aortic valve stenosis.
- Lp(a) levels are poorly managed by current treatments like statins and PCSK9 inhibitors.
- RNA-based therapies offer a novel approach to specifically target and reduce Lp(a).
Purpose of the Study:
- To review the current pipeline of Lp(a)-lowering therapies in late-stage development.
- To summarize ongoing cardiovascular outcomes trials (CVOTs) and novel therapeutic mechanisms.
- To provide an overview of emerging genomic and mechanistic approaches for Lp(a) management.
Main Methods:
- Analysis of phase 1-3 clinical trial data.
- Review of regulatory updates and trial registries up to mid-2026.
- Examination of new mechanistic and genomic methods for Lp(a) targeting.
Main Results:
- Five agents (pelacarsen, olpasiran, lepodisiran, zerlasiran, muvalaplin) are in late-stage development, utilizing antisense oligonucleotide, siRNA, and small-molecule inhibition.
- These agents demonstrate significant Lp(a) reductions (up to >95%) with favorable safety profiles.
- CRISPR/Cas9 gene editing targeting the LPA gene has entered early clinical studies.
- CVOTs are ongoing, with potential for regulatory approvals and guideline changes.
Conclusions:
- The therapeutic landscape for Lp(a) has rapidly advanced to late-stage clinical trials.
- Upcoming CVOT results are anticipated to influence global cardiovascular guidelines.
- Universal Lp(a) measurement is increasingly recommended in anticipation of new, effective therapies.
Purpose Of Review:
Lipoprotein(a) [Lp(a)] is a genetically determined, independent risk factor for atherosclerotic cardiovascular disease and calcific aortic valve stenosis. Plasma Lp(a) levels are 70-90% heritable, largely unresponsive to lifestyle changes, and poorly controlled with typical lipid-lowering drugs such as statins and PCSK9 inhibitors. The development of powerful RNA-based therapies offers a new chance to specifically target and significantly lower Lp(a). We examined available phase 1-3 trial data, regulatory updates, and trial registries up to mid-2026 to provide an overview of the current pipeline, ongoing cardiovascular outcomes trials (CVOTs), and new mechanistic and genomic methods.
Recent Findings:
Five agents across three mechanisms have reached late-stage development. Pelacarsen, a GalNAc-conjugated antisense oligonucleotide (ASO), reduces Lp(a) by about 80% via hepatic apo(a) mRNA reduction and is the subject of the phase 3 Lp(a) HORIZON trial, with results due in late 2026. Three small interfering RNA (siRNA) drugs, olpasiran (> 95% reduction, OCEAN(a)-Outcomes), lepodisiran (93.9% reduction lasting over 12 months after one dose, ACCLAIM-Lp(a)), and zerlasiran (96.4% reduction), allow quarterly or possibly yearly dosing. Muvalaplin, the first oral small-molecule Lp(a) inhibitor, interferes with apo(a)-ApoB particle formation and reduces intact Lp(a) by up to 85.8% in phase 2 KRAKEN trials; its phase 3 CVOT (MOVE-Lp(a)) is underway. Additionally, CRISPR/Cas9-based liver gene editing targeting the LPA gene (CTX320) has entered phase 1 studies. All agents have shown good safety so far. The Lp(a) treatment landscape has moved from basic science to an active late-stage clinical pipeline. Positive outcomes from these CVOTs could lead to regulatory approvals and guideline updates affecting hundreds of millions of high-risk patients globally. Recent guidelines now recommend universal Lp(a) measurement, in anticipation of more effective therapies becoming available within the next 1 to 2 years.
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