The persistence of low-grade inflammatory monocytes contributes to aggravated atherosclerosis

低度炎症单核细胞的持续存在会导致动脉粥样硬化加重。

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作者:Shuo Geng ,Keqiang Chen ,Ruoxi Yuan ,Liang Peng ,Urmila Maitra ,Na Diao ,Chun Chen ,Yao Zhang ,Yuan Hu ,Chen-Feng Qi ,Susan Pierce ,Wenhua Ling ,Huabao Xiong ,Liwu Li

Abstract

Sustained low-grade inflammation mediated by non-resolving inflammatory monocytes has long been suspected in the pathogenesis of atherosclerosis; however, the molecular mechanisms responsible for the sustainment of non-resolving inflammatory monocytes during atherosclerosis are poorly understood. Here we observe that subclinical endotoxemia, often seen in humans with chronic inflammation, aggravates murine atherosclerosis through programming monocytes into a non-resolving inflammatory state with elevated Ly6C, CCR5, MCP-1 and reduced SR-B1. The sustainment of inflammatory monocytes is due to the disruption of homeostatic tolerance through the elevation of miR-24 and reduction of the key negative-feedback regulator IRAK-M. miR-24 reduces the levels of Smad4 required for the expression of IRAK-M and also downregulates key lipid-processing molecule SR-B1. IRAK-M deficiency in turn leads to elevated miR-24 levels, sustains disruption of monocyte homeostasis and aggravates atherosclerosis. Our data define an integrated feedback circuit in monocytes and its disruption may lead to non-resolving low-grade inflammation conducive to atherosclerosis.

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