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.
Abstract

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