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Isolation and Analysis of Plasma Lipoproteins by Ultracentrifugation
Published on: January 28, 2021
CETP (Cholesteryl Ester Transfer Protein) Inhibition With Anacetrapib Decreases Production of Lipoprotein(a) in
Tiffany Thomas1, Haihong Zhou1, Wahida Karmally1
1From the Columbia University, New York (T.T., W.K., R.R., S.H., H.N.G., G.R.-S.); Merck & Co, Inc, Kenilworth, NJ (H.Z., Y.L., P.J., J.A.W., B.H., S.F.P., T.R., A.O.J.-L., D.E.G.); University of Washington, Seattle (S.M.M.); and University of Pennsylvania, Philadelphia (D.J.R., J.S.M.).
Insights
Anacetrapib significantly lowers lipoprotein (a) [Lp(a)] levels by reducing its production rate. This study explored the mechanism behind anacetrapib
Area of Science:
- Cardiovascular Medicine
- Pharmacology
Background:
- Lipoprotein (a) [Lp(a)] is a key independent risk factor for cardiovascular disease and aortic stenosis.
- Anacetrapib, a cholesteryl ester transfer protein (CETP) inhibitor, has demonstrated significant reductions in plasma Lp(a) levels in clinical trials.
Purpose of the Study:
- To investigate the underlying mechanism by which anacetrapib reduces Lp(a) levels.
- To examine the effects of anacetrapib on apolipoprotein B (apoB) and high-density lipoprotein metabolism.
Main Methods:
- An exploratory, fixed-sequence, double-blind study involving 39 participants.
- Participants received either atorvastatin plus placebo or atorvastatin plus anacetrapib.
- Stable isotope kinetic studies using 2H3-leucine were performed in a subset of 12 subjects to measure apo(a) fractional catabolic rate and production rate.
Main Results:
- Anacetrapib treatment resulted in a significant reduction in Lp(a) levels by 34.1% in the complete cohort and 39.6% in the subset.
- The observed decrease in Lp(a) was attributed to a 41% reduction in the apo(a) production rate.
- No significant effects on apo(a) fractional catabolic rate were observed.
Conclusions:
- Anacetrapib effectively lowers Lp(a) levels in patients.
- The primary mechanism for Lp(a) reduction by anacetrapib is a decrease in apo(a) production.
Objective:
Lp(a) [lipoprotein (a)] is composed of apoB (apolipoprotein B) and apo(a) [apolipoprotein (a)] and is an independent risk factor for cardiovascular disease and aortic stenosis. In clinical trials, anacetrapib, a CETP (cholesteryl ester transfer protein) inhibitor, causes significant reductions in plasma Lp(a) levels. We conducted an exploratory study to examine the mechanism for Lp(a) lowering by anacetrapib.
Approach And Results:
We enrolled 39 participants in a fixed-sequence, double-blind study of the effects of anacetrapib on the metabolism of apoB and high-density lipoproteins. Twenty-nine patients were randomized to atorvastatin 20 mg/d, plus placebo for 4 weeks, and then atorvastatin plus anacetrapib (100 mg/d) for 8 weeks. The other 10 subjects were randomized to double placebo for 4 weeks followed by placebo plus anacetrapib for 8 weeks. We examined the mechanisms of Lp(a) lowering in a subset of 12 subjects having both Lp(a) levels >20 nmol/L and more than a 15% reduction in Lp(a) by the end of anacetrapib treatment. We performed stable isotope kinetic studies using 2H3-leucine at the end of each treatment to measure apo(a) fractional catabolic rate and production rate. Median baseline Lp(a) levels were 21.5 nmol/L (interquartile range, 9.9-108.1 nmol/L) in the complete cohort (39 subjects) and 52.9 nmol/L (interquartile range, 38.4-121.3 nmol/L) in the subset selected for kinetic studies. Anacetrapib treatment lowered Lp(a) by 34.1% (P≤0.001) and 39.6% in the complete and subset cohort, respectively. The decreases in Lp(a) levels were because of a 41% reduction in the apo(a) production rate, with no effects on apo(a) fractional catabolic rate.
Conclusions:
Anacetrapib reduces Lp(a) levels by decreasing its production.
Clinical Trial Registration:
URL: http://www.clinicaltrials.gov. Unique identifier: NCT00990808.
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