Mechanisms
Is Lp(a) more than a bystander in hypertension? A review of the mechanistic evidence linking Lp(a) to blood pressure and hypertensive organ damage (Int J Mol Sci 2023)
Original title: Lipoprotein(a): Just an Innocent Bystander in Arterial Hypertension?
This narrative review examines whether elevated Lp(a), a highly heritable and independently causal cardiovascular risk factor per the 2022 European Atherosclerosis Society consensus statement, has a specific mechanistic role in arterial hypertension beyond its general atherogenic effects. The authors summarise the general mechanisms proposed to link Lp(a) to blood pressure regulation and hypertension-related cardiovascular and renal damage, noting that current evidence for a hypertension-specific role remains controversial. With antisense oligonucleotide and siRNA Lp(a)-lowering drugs now in phase 3 trials, the authors argue that clarifying Lp(a) role in hypertension could help identify which high-risk populations, including hypertensive patients, stand to benefit most from reducing residual cardiovascular risk.
Original abstract
Elevated plasma lipoprotein(a) [Lp(a)] is a relatively common and highly heritable trait conferring individuals time-dependent risk of developing atherosclerotic cardiovascular disease (CVD). Following its first description, Lp(a) triggered enormous scientific interest in the late 1980s, subsequently dampened in the mid-1990s by controversial findings of some prospective studies. It was only in the last decade that a large body of evidence has provided strong arguments for a causal and independent association between elevated Lp(a) levels and CVD, causing renewed interest in this lipoprotein as an emerging risk factor with a likely contribution to cardiovascular residual risk. Accordingly, the 2022 consensus statement of the European Atherosclerosis Society has suggested inclusion of Lp(a) measurement in global risk estimation. The development of highly effective Lp(a)-lowering drugs (e.g., antisense oligonucleotides and small interfering RNA, both blocking LPA gene expression) which are still under assessment in phase 3 trials, will provide a unique opportunity to reduce "residual cardiovascular risk" in high-risk populations, including patients with arterial hypertension. The current evidence in support of a specific role of Lp(a) in hypertension is somehow controversial and this narrative review aims to overview the general mechanisms relating Lp(a) to blood pressure regulation and hypertension-related cardiovascular and renal damage.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.