| Literature DB >> 24989153 |
Harumi Uto-Kondo1, Makoto Ayaori2, Grace Megumi Sotherden1, Kazuhiro Nakaya1, Makoto Sasaki1, Makiko Yogo1, Tomohiro Komatsu1, Shunichi Takiguchi1, Emi Yakushiji1, Masatsune Ogura1, Takafumi Nishida1, Yasuhiro Endo1, Katsunori Ikewaki1.
Abstract
Reverse cholesterol transport (RCT) is pivotal in the return of excess cholesterol from peripheral tissues to the liver for excretion in bile and eventually feces. RCT from macrophages is a critical anti-atherogenicity mechanism of HDL. As the cholesterol absorption inhibitor ezetimibe promoted RCT in mice, which lack cholesterol ester transfer protein (CETP), we investigated its effects in hamsters, which have CETP. A high-cholesterol diet (HC) increased cholesterol levels throughout lipoprotein fractions and ezetimibe markedly reduced VLDL/LDL cholesterol levels under both normal chow (NC) and HC. However, ezetimibe did not affect and reduced HDL-cholesterol levels under NC and HC, respectively. Intraperitoneal injection of (3)H-cholesterol pre-labeled macrophages in an in vivo RCT assay increased tracer accumulation in the liver but reduced it in bile under HC, and these changes were completely cancelled by ezetimibe. Under both NC and HC, ezetimibe reduced tracer levels in the liver but increased them in feces, indicating promotion of RCT in vivo. We performed a RCT assay using hamsters subjected to bile duct ligation (BDL) to clarify whether a transintestinal cholesterol efflux (TICE) pathway contributes to ezetimibe's enhancement of RCT. BDL markedly inhibited macrophage-derived (3)H-cholesterol excretion to feces and cancelled ezetimibe's stimulatory effect on RCT, suggesting that biliary cholesterol excretion is a major contributor in RCT promotion by ezetimibe but the contribution of the TICE pathway is minimal. In conclusions, ezetimibe exerts an additive anti-atherogenic property by enhancing RCT in hamsters. Our findings suggest that this property is independent of the TICE pathway.Entities:
Keywords: CETP; Ezetimibe; HDL; RCT; TICE
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Year: 2014 PMID: 24989153 DOI: 10.1016/j.bbalip.2014.05.009
Source DB: PubMed Journal: Biochim Biophys Acta ISSN: 0006-3002