2026· Procedings of the 51st Congresso Medico Universitario do ABC· 0 citations
Abstract
INTRODUCTION: Cardiovascular diseases remain the leading cause of global mortality, with atherosclerosis as a central mechanism. Lipoprotein(a) [Lp(a)] is an independent and highly atherogenic risk factor associated with vascular inflammation and thrombosis. Statins do not reduce Lp(a) levels and may even increase them, contributing to residual cardiovascular risk. Novel therapies targeting Lp(a) have emerged as promising strategies.
Methods
A systematic review was conducted according to PRISMA guidelines using PubMed (2016–2026). Clinical trials (phases I–IV) in humans with ≥50 participants and quantitative Lp(a) reduction data were included. Search terms addressed Lp(a), gene silencing, and lipid-lowering therapies. Twelve studies met inclusion criteria.
Results
Gene-silencing therapies showed the greatest reductions in Lp(a), with olpasiran, lepodisiran, and zerlasiran achieving reductions above 80–95%. Pelacarsen reduced Lp(a) by up to 80% in a dose-dependent manner. Muvalaplin reduced Lp(a) by up to 85% by inhibiting particle formation. PCSK9 inhibitors such as alirocumab and recaticimab showed moderate reductions (~28–36%), while inclisiran had modest effects (≈15–26%). Treatments were generally well tolerated.
Discussion
RNA-based therapies, particularly siRNA and antisense oligonucleotides, demonstrate superior efficacy by directly targeting apolipoprotein(a) synthesis. Alternative approaches such as muvalaplin expand therapeutic options by interfering with particle assembly.
Conclusion
Emerging Lp(a)-targeted therapies represent a major advance in addressing residual cardiovascular risk, though outcome trials are still needed.
The Lp(a) treatment landscape has moved from basic science to an active late-stage clinical pipeline and positive outcomes from these CVOTs could lead to regulatory approvals and guideline updates affecting hundreds of millions of high-risk patients globally.
U. Ebubechukwu, O. Ugoala, Rameen Shahid et al.· Current Atherosclerosis Repo...· 0 citations
Novel unapproved therapies, including an antisense oligonucleotide, small interfering RNAs, and an oral small molecule have demonstrated Lp(a) reductions of up to 99% and are being tested in ongoing cardiovascular outcomes trials to determine whether pharmacologic Lp(a) lowering translates into reduced cardiovascular e...
Yakubu Bene-Alhasan, V. Nambi, Layla A. Abushamat et al.· Methodist DeBakey Cardiovasc...· 0 citations
This narrative review summarizes the molecular biology, genetics, epidemiology, pathophysiological mechanisms, and clinical relevance of Lp(a), and critically examines current and emerging therapeutic strategies aimed at reducing Lp(a)-mediated cardiovascular risk.
L. Granata, Simona Giubilato, Francesca Campanella et al.· Frontiers in Medicine· 1 citation
Emerging evidence links Lp(a) to atrial fi brillation, broadening its clinical relevance and integrating Lp(a) testing into risk assessment and preparing for targeted therapies are critical steps in modern cardiovas-cular prevention.
L. Kopaleishvili, T. Chkhaidze, S. Ungiadze et al.· Bulgarian Cardiology· 0 citations
These agents have expanded treatment options for patients with familial dyslipidaemia, severe hypertriglyceridaemia, and persistent residual cardiovascular risk while paving the way for precision medicine.
Aryan Arora· Beyond the Pill – The Future...· 0 citations
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