Resolving Lipid Mediators Maresin 1 and Resolvin D2 Prevent Atheroprogression in Mice

脂质信号 炎症 调解人 白三烯 脂质代谢 药理学 医学 化学 免疫学 内科学 哮喘
作者
Joana R. Viola,Patricia Lemnitzer,Yvonne Jansen,Gergely Csaba,Carla Winter,Carlos Neideck,Carlos Silvestre-Roig,Gunnar Dittmar,Yvonne Döring,Maik Drechsler,Christian Weber,Ralf Zimmer,Nicolas Cenac,Oliver Soehnlein
出处
期刊:Circulation Research [Ovid Technologies (Wolters Kluwer)]
卷期号:119 (9): 1030-1038 被引量:162
标识
DOI:10.1161/circresaha.116.309492
摘要

Atheroprogression is a consequence of nonresolved inflammation, and currently a comprehensive overview of the mechanisms preventing resolution is missing. However, in acute inflammation, resolution is known to be orchestrated by a switch from inflammatory to resolving lipid mediators. Therefore, we hypothesized that lesional lipid mediator imbalance favors atheroprogression.To understand the lipid mediator balance during atheroprogression and to establish an interventional strategy based on the delivery of resolving lipid mediators.Aortic lipid mediator profiling of aortas from Apoe-/- mice fed a high-fat diet for 4 weeks, 8 weeks, or 4 months revealed an expansion of inflammatory lipid mediators, Leukotriene B4 and Prostaglandin E2, and a concomitant decrease of resolving lipid mediators, Resolvin D2 (RvD2) and Maresin 1 (MaR1), during advanced atherosclerosis. Functionally, aortic Leukotriene B4 and Prostaglandin E2 levels correlated with traits of plaque instability, whereas RvD2 and MaR1 levels correlated with the signs of plaque stability. In a therapeutic context, repetitive RvD2 and MaR1 delivery prevented atheroprogression as characterized by halted expansion of the necrotic core and accumulation of macrophages along with increased fibrous cap thickness and smooth muscle cell numbers. Mechanistically, RvD2 and MaR1 induced a shift in macrophage profile toward a reparative phenotype, which secondarily stimulated collagen synthesis in smooth muscle cells.We present evidence for the imbalance between inflammatory and resolving lipid mediators during atheroprogression. Delivery of RvD2 and MaR1 successfully prevented atheroprogression, suggesting that resolving lipid mediators potentially represent an innovative strategy to resolve arterial inflammation.

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