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急性切应力下 Nrf2-Keap1 失衡诱导静脉内皮细胞的炎症反应。

Nrf2-Keap-1 imbalance under acute shear stress induces inflammatory response in venous endothelial cells.

机构信息

Bristol Medical School, Bristol Heart Institute, University of Bristol, Bristol, UK.

Department of Cardiovascular Sciences, Clinical Sciences Wing, Glenfield Hospital, University of Leicester, Leicester, UK.

出版信息

Perfusion. 2022 Sep;37(6):582-589. doi: 10.1177/02676591211012571. Epub 2021 Apr 25.

Abstract

Vascular endothelial cell stimulation is associated with the activation of different signalling pathways and transcription factors. Acute shear stress is known to induce different pro-inflammatory mediators such as IL-8. Nrf2 is activated by prolonged high shear stress promoting an antiinflammatory and athero-protective environment. However, little is known about the impact of acute shear stress on Nrf2 and Keap1 function and its role in IL-8 regulation. We aimed to examine Nrf2-Keap1 complex activation in-vitro and its role in regulating IL-8 transcripts under acute arterial shear stress (12 dyn/cm) in venous endothelial cells (ECs). We note that acute high shear stress caused a significant upregulation of Nrf2 target genes, HO-1 and GCLM and an increased IL-8 upregulation at 90 and 120 minutes. Mechanistically, acute high shear did not affect Nrf2 nuclear translocation but resulted in reduced nuclear Keap1, suggesting that the reduction in nuclear Keap1 may result in increased free nuclear nrf2 to induce transcription. Consistently, the suppression of Keap1 using shRNA (shKeap1) resulted in significant upregulation of IL-8 transcripts in response to acute shear stress. Interestingly; the over expression of Nrf2 using Nrf2-Ad-WT or Sulforaphane was also associated with significant upregulation of IL-8 compared to controls. This study highlights the role of Keap1 in Nrf2 activation under shear stress and indicates that activation of Nrf2 may be deleterious in ECs in the context of acute haemodynamic injury.

摘要

血管内皮细胞刺激与不同信号通路和转录因子的激活有关。已知急性切应力会诱导不同的促炎介质,如 IL-8。Nrf2 可被长期的高切应力激活,从而促进抗炎和抗动脉粥样硬化的环境。然而,对于急性切应力对 Nrf2 和 Keap1 功能的影响及其在 IL-8 调节中的作用知之甚少。我们旨在研究 Nrf2-Keap1 复合物在静脉内皮细胞(EC)中急性动脉切应力(12 dyn/cm)下的体外激活及其在调节 IL-8 转录本中的作用。我们注意到,急性高切应力导致 Nrf2 靶基因 HO-1 和 GCLM 的显著上调,并在 90 和 120 分钟时增加了 IL-8 的上调。从机制上讲,急性高切应力不会影响 Nrf2 的核易位,但会导致核 Keap1 减少,这表明核 Keap1 的减少可能导致游离核 nrf2 增加,从而诱导转录。一致地,使用 shRNA(shKeap1)抑制 Keap1 会导致急性切应力下 IL-8 转录本的显著上调。有趣的是;与对照相比,使用 Nrf2-Ad-WT 或 Sulforaphane 过表达 Nrf2 也与 IL-8 的显著上调相关。这项研究强调了 Keap1 在切应力下 Nrf2 激活中的作用,并表明在急性血流动力学损伤的情况下,Nrf2 的激活可能对 EC 有害。

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