骨髓 Drp1 缺乏症通过炎性巨噬细胞极化和代谢重编程限制了缺血肌肉的血管再通。

IF 6.3 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL JCI insight Pub Date : 2025-01-09 DOI:10.1172/jci.insight.177334
Shikha Yadav, Vijay C Ganta, Sudhahar Varadarajan, Vy Ong, Yang Shi, Archita Das, Dipankar Ash, Sheela Nagarkoti, Malgorzata McMenamin, Stephanie Kelley, Tohru Fukai, Masuko Ushio-Fukai
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摘要

巨噬细胞在缺血后通过抗炎极化促进灌注恢复和血管再通方面发挥着至关重要的作用,这一过程对于治疗外周动脉疾病(PAD)至关重要。线粒体动力学,尤其是受裂变蛋白 DRP1 调节的线粒体动力学,与巨噬细胞的新陈代谢和炎症密切相关。然而,DRP1 在修复性新生血管中的作用仍有待探索。在这里,我们发现在后肢缺血(HLI)后的第 3 天,缺血肌肉内的 F4/80+ 巨噬细胞中 DRP1 表达增加,这是一种 PAD 动物模型。髓系细胞中缺乏 Drp1 的小鼠在 HLI 后表现出肢体灌注恢复、血管生成和肌肉再生能力受损。这些影响与促炎性 M1 样巨噬细胞、p-NFkB 和 TNFα 的增加以及抗炎性 M2 样巨噬细胞和骨髓 Drp1-/- 小鼠缺血肌肉中 p-AMPK 的减少有关。在体外,缺失 Drp1 的巨噬细胞在低氧血清饥饿(HSS)(一种体外 PAD 模型)条件下,通过减少 p-AMPK 和线粒体功能障碍,表现出糖酵解增强,线粒体 ROS 生成过多,导致促炎 M1 基因表达增加,抗炎 M2 基因表达减少。经 HSS 处理的 Drp1-/- 巨噬细胞的条件培养基显示促炎细胞因子分泌增加,导致内皮细胞的血管生成受到抑制。因此,缺血状态下巨噬细胞 DRP1 缺乏会导致促炎性代谢重编程和巨噬细胞极化,从而限制实验性 PAD 的血管再通。
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Myeloid DRP1 deficiency limits revascularization in ischemic muscles via inflammatory macrophage polarization and metabolic reprogramming.

Macrophages play a crucial role in promoting perfusion recovery and revascularization after ischemia through antiinflammatory polarization, a process essential for the treatment of peripheral artery disease (PAD). Mitochondrial dynamics, particularly regulated by the fission protein DRP1, are closely linked to macrophage metabolism and inflammation. However, the role of DRP1 in reparative neovascularization remains unexplored. Here, we show that DRP1 expression was increased in F4/80+ macrophages within ischemic muscle on day 3 after hind limb ischemia (HLI), an animal model of PAD. Mice lacking Drp1 in myeloid cells exhibited impaired limb perfusion recovery, angiogenesis, and muscle regeneration after HLI. These effects were associated with increased proinflammatory M1-like macrophages, p-NF-κB, and TNF-α, and reduced antiinflammatory M2-like macrophages and p-AMPK in ischemic muscle of myeloid Drp1-/- mice. In vitro, Drp1-deficient macrophages under hypoxia serum starvation (HSS), an in vitro PAD model, demonstrated enhanced glycolysis via reducing p-AMPK as well as mitochondrial dysfunction, and excessive mitochondrial ROS production, resulting in increased proinflammatory M1-gene and reduced antiinflammatory M2-gene expression. Conditioned media from HSS-treated Drp1-/- macrophages exhibited increased proinflammatory cytokine secretion, leading to suppressed angiogenesis in endothelial cells. Thus, macrophage DRP1 deficiency under ischemia drives proinflammatory metabolic reprogramming and macrophage polarization, limiting revascularization in experimental PAD.

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来源期刊
JCI insight
JCI insight Medicine-General Medicine
CiteScore
13.70
自引率
1.20%
发文量
543
审稿时长
6 weeks
期刊介绍: JCI Insight is a Gold Open Access journal with a 2022 Impact Factor of 8.0. It publishes high-quality studies in various biomedical specialties, such as autoimmunity, gastroenterology, immunology, metabolism, nephrology, neuroscience, oncology, pulmonology, and vascular biology. The journal focuses on clinically relevant basic and translational research that contributes to the understanding of disease biology and treatment. JCI Insight is self-published by the American Society for Clinical Investigation (ASCI), a nonprofit honor organization of physician-scientists founded in 1908, and it helps fulfill the ASCI's mission to advance medical science through the publication of clinically relevant research reports.
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