Near-Infrared Autofluorescence in Atherosclerosis Associates With Ceroid and Is Generated by Oxidized Lipid-Induced Oxidative Stress

氧化应激 脂褐素 脂质过氧化 化学 泡沫电池 脂滴 体外 氧化磷酸化 自体荧光 生物化学 巨噬细胞 荧光 物理 量子力学
作者
Mazen Albaghdadi,Ryutaro Ikegami,Mohamad B Kassab,Joseph A. Gardecki,Mie Kunio,Mohammed Chowdhury,Ramzi Khamis,Peter Libby,Guillermo J. Tearney,Farouc A. Jaffer
出处
期刊:Arteriosclerosis, Thrombosis, and Vascular Biology [Lippincott Williams & Wilkins]
卷期号:41 (7) 被引量:8
标识
DOI:10.1161/atvbaha.120.315612
摘要

Objective: Near-infrared autofluorescence (NIRAF) of atherosclerosis associates with intraplaque hemorrhage and is detectable in living patients with coronary artery disease. However, further mechanisms underlying NIRAF generation have not been fully characterized. Here, we investigated the role of lipids and oxidative stress in NIRAF generation in atherosclerosis and in vitro in human macrophages. Approach and Results: In N=15 human carotid endarterectomy specimens, we investigated the spatial distribution of lipid, intraplaque hemorrhage, and NIRAF (ex/em 630/650 nm). Plaque NIRAF associated with both Sudan black-positive lipids ( r =0.53, P =0.023) and GPA (glycophorin A)-positive intraplaque hemorrhage ( r =0.48, P =0.043). Plaque NIRAF also localized with lipid and specifically insoluble lipid (ceroid) and iron. Intriguingly, some NIRAF-positive areas were Sudan black-positive but GPA-negative. Studies on human macrophages investigated further the role of lipids in NIRAF generation. OxLDL (Oxidized low-density lipoprotein) and hemoglobin, but not LDL, generated NIRAF in both THP-1 cells and monocyte-derived macrophages. In oxLDL-treated THP-1 cells, higher NIRAF, lipid peroxidation products, and intracellular oxidative stress markers evolved ( P <0.001 versus LDL). The antioxidants α-tocopherol and N-acetylcysteine suppressed NIRAF generation and oxidative stress. Conclusions: In human atherosclerosis and human macrophages in vitro, NIRAF colocalizes with lipid and specifically insoluble lipid or ceroid. In vitro studies further show that oxidized LDL generates NIRAF, oxidative stress, and lipid peroxidation products. These results demonstrate a new pathway for NIRAF generation through oxidized lipid-driven oxidative stress and support ceroid as a source of NIRAF in human atherosclerosis. These findings may inform future clinical intracoronary NIRAF imaging studies of patients with coronary artery disease.

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