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Role of macrophage scavenger receptors in diet-induced atherosclerosis in mice.

基因剔除小鼠 清道夫受体 川地68 极低密度脂蛋白 巨噬细胞 脂蛋白 生物 受体 CD36 载脂蛋白E 内科学 内分泌学 泡沫电池 化学 低密度脂蛋白受体 胆固醇 免疫组织化学 医学 生物化学 体外 疾病
作者
Hisashi Sakaguchi,Motohiro Takeya,Hiroshi Suzuki,Hideki Hakamata,Taketoshi Kodama,Seikoh Horiuchi,Siamon Gordon,van der Laan Lj,Georg Kraal,Shun Ishibashi,N Kitamura,Koki Takahashi
出处
期刊:PubMed [National Institutes of Health]
卷期号:78 (4): 423-34 被引量:146
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摘要

To clarify the role of type I and type II macrophage scavenger receptors (MSR-A) in the progression of diet-induced atherosclerosis, we generated mice lacking both MSR-A and low-density lipoprotein receptor (LDLR). After 4 or 12 weeks of a high-fat diet, the sizes of atherosclerotic lesions in MSR-A/LDLR double knockout mice were significantly reduced (p < 0.05) compared with those in LDLR single knockout mice. However, atherosclerotic lesions mainly composed of foamy macrophages were still observed in double knockout mice. Formation of atherosclerotic lesions in double knockout mice was partially explained by the participation of scavenger receptors other than MSR-A such as MARCO, CD36, and macrosialin/CD68. These receptors were clearly demonstrated in the atherosclerotic lesions in double knockout mice as well as LDLR single knockout mice by immunohistochemistry or by reverse transcriptase-polymerase chain reaction. Because the very low density lipoprotein (VLDL) fraction was elevated in the double and single knockout mice, we further examined the possibility that VLDL may participate in foam cell formation in atherosclerotic lesions. When incubated with VLDL isolated from LDLR-deficient mice, cholesterol ester accumulation and foamy transformation occurred in MSR-A-deficient macrophages as well as in normal macrophages. These data indicate that MSR-A plays an essential role in the development of diet-induced atherosclerosis. It also appears that other scavenger receptors, such as MARCO, CD36, and macrosialin/CD68, as well as uptake of VLDL are involved in foam cell formation during atherogenesis in MSR-A/LDLR double knockout mice.

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