cetpinhibition.org

Anacetrapib

A new piperidine-based CETP inhibitor retains potency in hypertriglyceridemic plasma where other CETP inhibitors lose efficacy (J Med Chem 2017)

Original title: Discovery of a Novel Piperidine-Based Inhibitor of Cholesteryl Ester Transfer Protein (CETP) That Retains Activity in Hypertriglyceridemic Plasma

J Med Chem · · 6

Yamada K, Brousseau M, Honma W, Iimura A, Imase H, Iwaki Y, Kawanami T, LaSala D, Liang G, Mitani H, Nonomura K, Ohmori O et al.

This paper describes a novel piperidine-based CETP inhibitor with a core structure distinct from previously reported compounds, developed via a versatile synthesis from 4-methoxypyridine that enabled efficient structure-activity exploration. Optimization targeted better pharmacokinetics and reduced off-target liabilities such as CYP inhibition, yielding compound 16 (TAP311), an achiral, carboxylic-acid-bearing molecule with strong pharmacokinetics in rats and robust efficacy in hamsters. Compared with anacetrapib, TAP311 showed substantially reduced lipophilicity, only modest distribution into adipose tissue, and retained potency in hypertriglyceridemic plasma both in vitro and in vivo. Unlike torcetrapib, it did not increase aldosterone secretion in human adrenocortical carcinoma cells or in chronically cannulated rats, and based on this preclinical efficacy and safety profile the compound advanced into clinical trials.

Read the paper (DOI)PubMed

Original abstract

Herein we describe the discovery and characterization of a novel, piperidine-based inhibitor of cholesteryl ester transfer protein (CETP) with a core structure distinct from other reported CETP inhibitors. A versatile synthesis starting from 4-methoxypyridine enabled an efficient exploration of the SAR, giving a lead molecule with potent CETP inhibition in human plasma. The subsequent optimization focused on improvement of pharmacokinetics and mitigation of off-target liabilities, such as CYP inhibition, whose improvement correlated with increased lipophilic efficiency. The effort led to the identification of an achiral, carboxylic acid-bearing compound 16 (TAP311) with excellent pharmacokinetics in rats and robust efficacy in hamsters. Compared to anacetrapib, the compound showed substantially reduced lipophilicity, had only modest distribution into adipose tissue, and retained potency in hypertriglyceridemic plasma in vitro and in vivo. Furthermore, in contrast to torcetrapib, the compound did not increase aldosterone secretion in human adrenocortical carcinoma cells nor in chronically cannulated rats. On the basis of its preclinical efficacy and safety profile, the compound was advanced into clinical trials.

anacetrapibthe classpharmacology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.