Dysregulated cholesterol uptake and efflux of bone marrow-derived α-SMA+ macrophages contribute to atherosclerotic plaque formation.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Menglu Li, Lili Wu, Yuxin Wen, Anni Wang, Xiao Zhou, Lijie Ren, Qiongyu Lu, Fengchan Li, Li Zhu, Chaojun Tang
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Abstract

Macrophages play differential roles in the pathogenesis of atherosclerosis due to their different phenotypes. Although α-SMA+ macrophages have been found to present in bone marrow and atherosclerotic plaques, their role in atherosclerosis remains unclear. By performing partial carotid ligation (PCL) on monocyte/macrophage lineage-tracked mice, we observed bone marrow-derived α-SMA+ macrophages in the subendothelium and atherosclerotic plaques under disturbed flow conditions. The functional role of α-SMA+ macrophages in atherosclerotic plaque formation was examined using macrophage-specific Acta2 knockout (Acta2MKO) mice generated by crossing Acta2f/f transgenic mice with LysM-Cre mice. The size of the aortic plaques was 77.43% smaller in Acta2MKO mice than in Acta2f/f mice following adeno-associated virus-mutant PCSK9 injection and high-fat diet (HFD) feeding for 12 weeks. A significant reduction in lipid deposition, macrophage infiltration and the α-SMA+ area was observed in the aortic roots of Acta2MKO mice compared with Acta2f/f mice. Mechanistically, using Acta2-overexpressing Raw264.7 cells (Acta2hi cells) and bone marrow-derived macrophages (BMDMs) from Acta2MKO mice (Acta2MKO BMDMs), we showed that macrophage α-SMA increased the expression of the scavenger receptor SR-A, induced Ox-LDL binding and uptake, and reduced the level of the cholesterol transporter ABCA1, potentially via the AKT pathway. Together, our results indicate that bone marrow-derived α-SMA+ macrophages contribute to atherosclerotic plaque formation due to dysregulated cholesterol uptake and efflux, providing potential targets for the prevention and treatment of atherosclerosis.

骨髓源性α-SMA+巨噬细胞的胆固醇摄取和外排失调有助于动脉粥样硬化斑块的形成。
巨噬细胞由于其不同的表型,在动脉粥样硬化的发病机制中起着不同的作用。尽管已发现α-SMA+巨噬细胞存在于骨髓和动脉粥样硬化斑块中,但其在动脉粥样硬化中的作用尚不清楚。通过对单核细胞/巨噬细胞谱系追踪的小鼠进行部分颈动脉结扎(PCL),我们在血流紊乱的条件下观察到内皮下和动脉粥样硬化斑块中骨髓来源的α-SMA+巨噬细胞。通过将Acta2f/f转基因小鼠与LysM-Cre小鼠杂交产生巨噬细胞特异性Acta2MKO小鼠,研究α-SMA+巨噬细胞在动脉粥样硬化斑块形成中的功能作用。注射腺相关病毒突变型PCSK9和高脂饮食(HFD)喂养12周后,Acta2MKO小鼠的主动脉斑块大小比Acta2f/f小鼠小77.43%。与Acta2f/f小鼠相比,Acta2MKO小鼠主动脉根部的脂质沉积、巨噬细胞浸润和α-SMA+面积明显减少。从机制上讲,利用acta2过表达的Raw264.7细胞(Acta2hi细胞)和Acta2MKO小鼠(Acta2MKO BMDMs)的骨髓源性巨噬细胞(BMDMs),我们发现巨噬细胞α-SMA增加了清除率受体SR-A的表达,诱导Ox-LDL的结合和摄取,并降低了胆固醇转运体ABCA1的水平,可能通过AKT途径。综上所述,我们的研究结果表明,骨髓来源的α-SMA+巨噬细胞由于胆固醇摄取和排出失调而参与动脉粥样硬化斑块的形成,为预防和治疗动脉粥样硬化提供了潜在的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cellular and Molecular Life Sciences
Cellular and Molecular Life Sciences 生物-生化与分子生物学
CiteScore
13.20
自引率
1.20%
发文量
546
审稿时长
1.0 months
期刊介绍: Journal Name: Cellular and Molecular Life Sciences (CMLS) Location: Basel, Switzerland Focus: Multidisciplinary journal Publishes research articles, reviews, multi-author reviews, and visions & reflections articles Coverage: Latest aspects of biological and biomedical research Areas include: Biochemistry and molecular biology Cell biology Molecular and cellular aspects of biomedicine Neuroscience Pharmacology Immunology Additional Features: Welcomes comments on any article published in CMLS Accepts suggestions for topics to be covered
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