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Macrophage deficiency of Akt2 reduces atherosclerosis in Ldlr null mice

机译:Akt2的巨噬细胞缺乏会降低Ldlr null小鼠的动脉粥样硬化

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Macrophages play crucial roles in the formation of atherosclerotic lesions. Akt, a serine/threonine protein kinase B, is vital for cell proliferation, migration, and survival. Macrophages express three Akt isoforms, Akt1, Akt2, and Akt3, but the roles of Akt1 and Akt2 in atherosclerosis in vivo remain unclear. To dissect the impact of macrophage Akt1 and Akt2 on early atherosclerosis, we generated mice with hematopoietic deficiency of Akt1 or Akt2. After 8 weeks on Western diet, Ldlr−/− mice reconstituted with Akt1−/− fetal liver cells (Akt1−/−→Ldlr−/−) had similar atherosclerotic lesion areas compared with control mice transplanted with WT cells (WT→Ldlr−/−). In contrast, Akt2−/−→Ldlr−/− mice had dramatically reduced atherosclerotic lesions compared with WT→Ldlr−/− mice of both genders. Similarly, in the setting of advanced atherosclerotic lesions, Akt2−/−→Ldlr−/− mice had smaller aortic lesions compared with WT→Ldlr−/− and Akt1−/−→Ldlr−/− mice. Importantly, Akt2−/−→Ldlr−/− mice had reduced numbers of proinflammatory blood monocytes expressing Ly-6Chi and chemokine C-C motif receptor 2. Peritoneal macrophages isolated from Akt2−/− mice were skewed toward an M2 phenotype and showed decreased expression of proinflammatory genes and reduced cell migration. Our data demonstrate that loss of Akt2 suppresses the ability of macrophages to undergo M1 polarization reducing both early and advanced atherosclerosis.
机译:巨噬细胞在动脉粥样硬化病变的形成中起关键作用。 Akt是一种丝氨酸/苏氨酸蛋白激酶B,对细胞增殖,迁移和存活至关重要。巨噬细胞表达三种Akt亚型,即Akt1,Akt2和Akt3,但Akt1和Akt2在体内动脉粥样硬化中的作用尚不清楚。为了剖析巨噬细胞Akt1和Akt2对早期动脉粥样硬化的影响,我们生成了具有Akt1或Akt2造血缺陷的小鼠。西方饮食8周后,Ldlr -/-小鼠用Akt1 -/-胎肝细胞(Akt1 -/-→Ldlr <与移植了WT细胞(WT→Ldlr -/-)的对照小鼠相比,sup>-/-)的动脉粥样硬化病变区域相似。相反,与WT→Ldlr -/-小鼠相比,Akt2 -// →Ldlr -/-小鼠的动脉粥样硬化病变明显减少性别。同样,在晚期动脉粥样硬化病变的情况下,Akt2 -/-→Ldlr -/-小鼠的主动脉病变比WT→Ldlr -/-< / sup>和Akt1 -/-→Ldlr -/-小鼠。重要的是,Akt2 -/-→Ldlr -/-小鼠的促炎性单核细胞表达Ly-6C hi 和趋化因子CC基序受体的数量减少2.从Akt2 -/-小鼠中分离出的腹膜巨噬细胞偏向M2表型,并显示促炎基因的表达减少和细胞迁移减少。我们的数据表明,Akt2的丧失抑制了巨噬细胞经历M1极化的能力,从而减少了早期和晚期的动脉粥样硬化。

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