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内皮细胞 PPARδ 通过与 HIF1α 相互作用促进缺血后血管修复。

Endothelial PPARδ facilitates the post-ischemic vascular repair through interaction with HIF1α.

机构信息

School of Biomedical Sciences, Faculty of Medicine; Chinese University of Hong Kong, Hong Kong SAR, China.

CUHK Shenzhen Research Institute, Shenzhen, China.

出版信息

Theranostics. 2022 Jan 24;12(4):1855-1869. doi: 10.7150/thno.69017. eCollection 2022.

Abstract

Restoration of vascular perfusion in peripheral arterial disease involves a combination of neovessel formation and the functional restoration of vascular endothelium. Previous studies indicated that ligand-dependent PPARδ activation enhances angiogenesis. However, how PPARδ is triggered by hypoxia and its downstream effects during post-ischemic vascular repair was not well understood. We induced experimental hindlimb ischemia in endothelial cell selective knockout induced by Cdh5-Cre mediated deletion of floxed Ppard allele in mice and their wild type control and observed blood perfusion, capillary density, vascular relaxation, and vascular leakage. Deletion of endothelial delayed perfusion recovery and tissue repair, accompanied by delayed post-ischemic angiogenesis, impaired restoration of vascular integrity, more vascular leakage and enhanced inflammatory responses. At the molecular level, hypoxia upregulated and activated PPARδ in endothelial cells, whereas PPARδ reciprocally stabilized HIF1α protein to prevent its ubiquitin-mediated degradation. PPARδ directly bound to the oxygen-dependent degradation domain of HIF1α at the ligand-dependent domain of PPARδ. Importantly, this HIF1α-PPARδ interaction was independent of PPARδ ligand. Adeno-associated virus mediated endothelium-targeted overexpression of stable HIF1α improved perfusion recovery, suppressed vascular inflammation, and enhanced vascular repair, to counteract with the effect of knockout after hindlimb ischemia in mice. In summary, hypoxia-induced, ligand-independent activation of PPARδ in ECs stabilizes HIF1α and serves as a critical regulator for HIF1α activation to facilitate the post-ischemic restoration of vascular homeostasis.

摘要

在周围动脉疾病中,血管灌注的恢复涉及新血管形成和血管内皮功能的恢复。以前的研究表明,配体依赖性 PPARδ 激活可增强血管生成。然而,PPARδ 如何被缺氧触发及其在缺血后血管修复过程中的下游作用还不太清楚。我们在小鼠中诱导内皮细胞选择性 Cre 介导的 Cdh5-Cre 缺失 floxed Ppard 等位基因,建立实验性后肢缺血模型,并观察其血流灌注、毛细血管密度、血管舒张和血管渗漏。内皮细胞中 PPARδ 的缺失延迟了灌注恢复和组织修复,伴随着缺血后血管生成延迟、血管完整性恢复受损、更多的血管渗漏和炎症反应增强。在分子水平上,缺氧在上皮细胞中上调并激活了 PPARδ,而 PPARδ 则反向稳定了 HIF1α 蛋白,以防止其泛素介导的降解。PPARδ 在配体依赖性的 PPARδ 结构域与 HIF1α 的氧依赖性降解结构域直接结合。重要的是,这种 HIF1α-PPARδ 相互作用不依赖于 PPARδ 配体。腺相关病毒介导的内皮细胞靶向过表达稳定的 HIF1α 可改善灌注恢复、抑制血管炎症、增强血管修复,以对抗小鼠后肢缺血后 缺失的作用。总之,缺氧诱导的内皮细胞中配体非依赖性的 PPARδ 激活稳定了 HIF1α,并作为 HIF1α 激活的关键调节剂,促进缺血后血管内稳态的恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65e5/8825601/9c488859181c/thnov12p1855g001.jpg

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