RNA therapeutics
Mipomersen cuts Lp(a) by 26% across diverse hypercholesterolaemia populations, a pooled analysis of 4 phase 3 trials and 382 patients (Arterioscler Thromb Vasc Biol 2015)
Original title: Mipomersen, an antisense oligonucleotide to apolipoprotein B-100, reduces lipoprotein(a) in various populations with hypercholesterolemia: results of 4 phase III trials
This pooled analysis of 4 phase 3 trials randomised 382 patients on maximally tolerated lipid-lowering therapy, 2:1, to weekly subcutaneous mipomersen 200 mg (n=256) or placebo (n=126) for 26 weeks, across populations with homozygous or heterozygous familial hypercholesterolaemia, severe hypercholesterolaemia, or hypercholesterolaemia at high coronary risk. Of the 382 patients, 57% had baseline Lp(a) above 30 mg/dL and 44% above 50 mg/dL. At 28 weeks, mipomersen produced a significantly greater median percent decrease in Lp(a) than placebo (-26.4% versus -0.0%, P<0.001), with attainment of Lp(a) at or below 30 or 50 mg/dL most frequent in homozygous familial hypercholesterolaemia and severe hypercholesterolaemia patients. Modest correlations were seen between percent change in apolipoprotein B-100 and Lp(a) (r=0.43, P<0.001) and between LDL cholesterol and Lp(a) changes (r=0.36, P<0.001). The findings show mipomersen consistently and effectively lowers Lp(a) across diverse hypercholesterolaemia populations, though the mechanism linking apoB-100 and Lp(a) reduction remains unclear.
Original abstract
Objective: Lp(a) is an independent, causal, genetic risk factor for cardiovascular disease and aortic stenosis. Current pharmacological lipid-lowering therapies do not optimally lower Lp(a), particularly in patients with familial hypercholesterolemia (FH).
Approach And Results: In 4 phase III trials, 382 patients on maximally tolerated lipid-lowering therapy were randomized 2:1 to weekly subcutaneous mipomersen 200 mg (n=256) or placebo (n=126) for 26 weeks. Populations included homozygous FH, heterozygous FH with concomitant coronary artery disease (CAD), severe hypercholesterolemia, and hypercholesterolemia at high risk for CAD. Lp(a) was measured 8× between baseline and week 28 inclusive. Of the 382 patients, 57% and 44% had baseline Lp(a) levels >30 and >50 mg/dL, respectively. In the pooled analysis, the mean percent decrease (median, interquartile range in Lp(a) at 28 weeks was significantly greater in the mipomersen group compared with placebo (-26.4 [-42.8, -5.4] versus -0.0 [-10.7, 15.3]; P<0.001). In the mipomersen group in patients with Lp(a) levels >30 or >50 mg/dL, attainment of Lp(a) values ≤30 or ≤50 mg/dL was most frequent in homozygous FH and severe hypercholesterolemia patients. In the combined groups, modest correlations were present between percent change in apolipoprotein B-100 and Lp(a) (r=0.43; P<0.001) and low-density lipoprotein cholesterol and Lp(a) (r=0.36; P<0.001) plasma levels.
Conclusions: Mipomersen consistently and effectively reduced Lp(a) levels in patients with a variety of lipid abnormalities and cardiovascular risk. Modest correlations were present between apolipoprotein B-100 and Lp(a) lowering but the mechanistic relevance mediating Lp(a) reduction is currently unknown.
familial hypercholesterolaemiaphase 3RNA therapeutics
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.