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Evacetrapib

Evacetrapib crosses the blood-brain barrier within 30 minutes, positioning CETP inhibitors as candidates for Alzheimer's disease (Front Pharmacol 2023)

Original title: CETP inhibitor evacetrapib enters mouse brain tissue

Front Pharmacol · · 6

Phénix J, Côté J, Dieme D, Recinto SJ, Oestereich F, Efrem S, Haddad S, Bouchard M, Munter LM

High plasma cholesterol, particularly LDL-C, raises Alzheimer's disease risk, and CETP raises plasma LDL-C by redistributing cholesteryl esters between lipoproteins; epidemiologically, lower CETP activity is linked to sustained cognitive performance during aging, longevity, and reduced Alzheimer's disease risk. Since CETP is expressed not only by the liver but also by brain astrocytes, this study tested whether the CETP inhibitor evacetrapib can reach the brain, characterizing its pharmacokinetics in plasma, liver, and brain tissue of CETP transgenic mice. Evacetrapib crossed the blood-brain barrier and was detectable in brain tissue as early as 0.5 hours after a 40 mg/kg intravenous injection, following a non-linear pharmacokinetic pattern, indicating evacetrapib may be a suitable candidate for treating CETP-mediated cholesterol dysregulation in Alzheimer's disease.

Read the paper (DOI)PubMed

Original abstract

High levels of plasma cholesterol, especially high levels of low-density lipoprotein cholesterol (LDL-C), have been associated with an increased risk of Alzheimer's disease. The cholesteryl ester transfer protein (CETP) in plasma distributes cholesteryl esters between lipoproteins and increases LDL-C in plasma. Epidemiologically, decreased CETP activity has been associated with sustained cognitive performance during aging, longevity, and a lower risk of Alzheimer's disease. Thus, pharmacological CETP inhibitors could be repurposed for the treatment of Alzheimer's disease as they are safe and effective at lowering CETP activity and LDL-C. Although CETP is mostly expressed by the liver and secreted into the bloodstream, it is also expressed by astrocytes in the brain. Therefore, it is important to determine whether CETP inhibitors can enter the brain. Here, we describe the pharmacokinetic parameters of the CETP inhibitor evacetrapib in the plasma, liver, and brain tissues of CETP transgenic mice. We show that evacetrapib crosses the blood-brain barrier and is detectable in brain tissue 0.5 h after a 40 mg/kg i.v. injection in a non-linear function. We conclude that evacetrapib may prove to be a good candidate to treat CETP-mediated cholesterol dysregulation in Alzheimer's disease.

cognitionevacetrapibpharmacology

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