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Anacetrapib

Dalcetrapib, but not anacetrapib, raises plasma and liver levels of the dietary antioxidants lutein and zeaxanthin (Lipids 2014)

Original title: Effect of compounds affecting ABCA1 expression and CETP activity on the HDL pathway involved in intestinal absorption of lutein and zeaxanthin

Lipids · · 4

Niesor EJ, Chaput E, Mary JL, Staempfli A, Topp A, Stauffer A, Wang H, Durrwell A

Using human polarized intestinal cell culture and a hamster model, this study examined how HDL, apoA1, and ABCA1 govern intestinal absorption of the antioxidant xanthophylls lutein and zeaxanthin. In vitro, ABCA1 at the basolateral surface of enterocytes transferred lutein and zeaxanthin to apoA1 rather than to mature HDL. In hamsters given dietary lutein and zeaxanthin, a liver X receptor agonist that upregulates intestinal ABCA1 markedly raised plasma lutein and zeaxanthin, while simvastatin, which downregulates ABCA1, lowered them. To probe the role of HDL directly, animals were treated with the CETP modulator dalcetrapib or the CETP inhibitor anacetrapib: dalcetrapib increased plasma and liver lutein and zeaxanthin levels, but anacetrapib did not, indicating that ABCA1-mediated apoA1 acceptor activity and an HDL-dependent pathway distinct from simple CETP inhibition govern the intestinal uptake and maintenance of these carotenoids.

Read the paper (DOI)PubMed

Original abstract

The antioxidant xanthophylls lutein and zeaxanthin are absorbed from the diet in a process involving lipoprotein formation. Selective mechanisms exist for their intestinal uptake and tissue-selective distribution, but these are poorly understood. We investigated the role of high-density lipoprotein (HDL), apolipoprotein (apo) A1 and ATP-binding cassette transporter (ABC) A1 in intestinal uptake of lutein in a human polarized intestinal cell culture and a hamster model. Animals received dietary lutein and zeaxanthin and either a liver X receptor (LXR) agonist or statin, which up- or down-regulate intestinal ABCA1 expression, respectively. The role of HDL was studied following treatment with the cholesteryl ester transfer protein (CETP) modulator dalcetrapib or the CETP inhibitor anacetrapib. In vitro, intestinal ABCA1 at the basolateral surface of enterocytes transferred lutein and zeaxanthin to apoA1, not to mature HDL. In hamsters, plasma lutein and zeaxanthin levels were markedly increased with the LXR agonist and decreased with simvastatin. Dalcetrapib, but not anacetrapib, increased plasma and liver lutein and zeaxanthin levels. ABCA1 expression and apoA1 acceptor activity are important initial steps in intestinal uptake and maintenance of lutein and zeaxanthin levels by an HDL-dependent pathway. Their absorption may be improved by physiological and pharmacological interventions affecting HDL metabolism.

anacetrapibdalcetrapibmechanisms

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