A controlled-release mitochondrial protonophore attenuates early- and late-stage atheroprogression in mice

原核载体 背景(考古学) 内分泌学 内科学 炎症体 医学 活性氧 氧化磷酸化 胰岛素 胰岛素抵抗 促炎细胞因子 脂蛋白 线粒体 线粒体ROS 巨噬细胞 血脂异常 药理学 炎症 载脂蛋白B 甘油三酯 化学 载脂蛋白E 病变 胆固醇 氧化应激 糖尿病 生物 脂肪肝 疾病 线粒体基质 脂肪变性
作者
Bernardo Gindri dos Santos,Niki F. Brisnovali,Connor Haney,Myles Coven,Homa Linda Sebzevari,Lena Gaebel,Xinbo Zhang,Jonathan Sun,Alberto Canfrán-Duque,Noemi Rotllan,Ali Nasiri,Mario Kahn,Cameron S. McAlpine,Gerald I. Shulman,Leigh Goedeke
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:18 (858): eadv1815-eadv1815 被引量:1
标识
DOI:10.1126/scitranslmed.adv1815
摘要

Atherosclerotic cardiovascular disease (ASCVD) remains a leading cause of morbidity and mortality in patients with insulin resistance, and new therapies are urgently needed. We previously developed an orally administered formulation of 2,4-dinitrophenol, here termed controlled-release mitochondrial protonophore (CRMP), and showed that it safely reversed hypertriglyceridemia, hepatic steatosis, and insulin resistance in dysmetabolic rodents and nonhuman primates. Here, we investigated the therapeutic utility of CRMP for treating atherogenesis in a murine model of cardiometabolic syndrome [high-fat cholesterol diet (HFCD)–fed low-density lipoprotein receptor–deficient ( Ldlr −/− ) mice]. In both early and late disease stages, CRMP treatment diminished total plaque burden and lesion size compared with HFCD. Morphometric analysis of the aortic root revealed that CRMP also decreased neutral lipid and lesional macrophage content and increased plaque stability. Reductions in atheroprogression were associated with lower plasma and hepatic triglyceride levels and improved whole-body insulin sensitivity, as assessed by hyperinsulinemic-euglycemic clamps. Furthermore, CRMP markedly limited lesional macrophage inflammasome activation and IL-1β release, changes that are consistent with a local immune-dampening effect. Mechanistically, CRMP-mediated reductions in inflammasome activation were driven by mild increases in macrophage mitochondrial inefficiency and lower mitochondrial reactive oxygen species (ROS) production. These effects were context dependent because CRMP failed to curtail lesional IL-1β content and atheroprogression in chow-fed apolipoprotein E–deficient ( Apoe −/− ) mice. Collectively, these data show that CRMP exerted antiatherogenic effects through uncoupling of oxidative phosphorylation in hepatocytes and macrophages, highlighting the therapeutic potential of mitochondrial uncouplers for treating ASCVD.
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