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February 26, 2026Journal of Clinical Medicine0 citationsOpen Access

Impact of Lipoprotein(a) on Residual Cardiovascular Risk After an Acute Coronary Syndrome

NGNelsa González-AguadoRFRafael Franco-HitaJLJose Ignacio Larrubia-Valle

Key Points

  • To evaluate the contribution of lipoprotein(a) to residual cardiovascular risk following acute coronary syndrome.
  • Review of existing literature on lipoprotein(a) and its role in cardiovascular health.
  • Assessment of clinical trials regarding RNA-based therapies targeting Lp(a).
  • Analysis of the relationship between Lp(a) levels and cardiovascular events after ACS.
  • Elevated Lp(a) is an independent risk factor for atherosclerotic cardiovascular disease.
  • Incidence of major adverse cardiovascular events after ACS remains high at approximately 33.4% over 5 years.
  • Limited therapeutic options exist for directly targeting Lp(a), though emerging RNA-based therapies show promise.

Abstract

Reducing residual cardiovascular risk following acute coronary syndrome (ACS) remains a major unmet clinical need. Despite substantial advances in lipid-lowering therapies, the risk of recurrent major adverse cardiovascular events (MACEs) after ACS remains high, with an estimated incidence of approximately 33.4% at 5 years. Residual cardiovascular risk is driven by multiple mechanisms, including persistent inflammation, a prothrombotic status, metabolic disturbances, and the presence of atherogenic lipoproteins beyond low-density lipoprotein cholesterol (LDL-C). Lipoprotein(a) (Lp(a)) is a pro-inflammatory, prothrombotic, and pro-atherosclerotic lipoprotein that appears to play a major role in residual risk after ACS or ischemic stroke. Elevated Lp(a) is a well-established independent and causal risk factor for atherosclerotic cardiovascular disease (ASCVD). Nevertheless, evidence regarding its prognostic value specifically after ACS remains limited, with marked heterogeneity across studies, which complicates direct comparisons and interpretation. In addition, while Lp(a) levels are predominantly genetically determined, recent studies have reported intra-individual variability, although their clinical significance remains uncertain. Finally, current therapeutic options specifically targeting Lp(a) are limited. Novel RNA-based therapies, including antisense oligonucleotides, small interfering RNAs, and emerging gene-editing approaches, have demonstrated profound and sustained reductions in circulating Lp(a) levels. Yet, whether this biological effect translates into reductions in hard clinical endpoints is under evaluation in ongoing clinical trials. This review aims to synthesize current evidence on the role of Lp(a) as a major contributor to residual cardiovascular risk following ACS.

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Cite This Study

González-Aguado et al. (2026) studied this question.

synapsesocial.com/papers/699fe31195ddcd3a253e6aefhttps://doi.org/10.3390/jcm15051688
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