孤立股动脉模型中壁剪切应力改变引起的炎症性单核细胞反应

Aparna A. Kadam, R. Gersch, T. Rosengart, M. Frame
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引用次数: 5

摘要

动脉生成(侧支形成)伴随着促炎状态,这可能与新侧支血管内的壁剪切应力(WSS)有关。原位或体内检测促炎成分是复杂的。在离体小鼠股动脉灌注模型中,我们检测了壁剪切应力对促动脉生成炎症标志物和单核细胞粘附的影响。在具有明确脉搏血流的股动脉模型中,在24小时灌注期间控制WSS(在生理应激下,1.4倍和2倍生理应激下),然后评估基因表达水平和单核细胞粘附。与生理对照组相比,WSS升高的不同水平下,细胞因子TNFα、粘附分子ICAM-1、生长因子TGFβ和转录因子Egr-1的表达均显著上调。此外,随着WSS的增加,FGF-2、细胞因子MCP-1、粘附分子VCAM-1和p -选择素也有上调的趋势。最后,单核细胞粘附随着WSS的增加而增加。我们建立了小鼠股动脉模型来研究体外WSS的变化,并表明动脉通过上调炎症细胞因子、粘附分子和生长因子来响应,这与之前在体内的研究结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inflammatory monocyte response due to altered wall shear stress in an isolated femoral artery model
Arteriogenesis (collateral formation) is accompanied by a pro-inflammatory state that may be related to the wall shear stress (WSS) within the neo-collateral vessels. Examining the pro-inflammatory component in situ or in vivo is complex. In an ex vivo mouse femoral artery perfusion model, we examined the effect of wall shear stress on pro-arteriogenic inflammatory markers and monocyte adhesion. In a femoral artery model with defined pulsatile flow, WSS was controlled (at physiological stress, 1.4×, and 2× physiological stress) during a 24 h perfusion before gene expression levels and monocyte adhesion were assessed. Significant upregulation of expression was found for the cytokine TNFα, adhesion molecule ICAM-1, growth factor TGFβ, and the transcription factor Egr-1 at varying levels of increased WSS compared to physiological control. Further, trends toward upregulation were found for FGF-2, the cytokine MCP-1 and adhesion molecules VCAM-1 and P-selectin with increased WSS. Finally, monocytes adhesion increased in response to increased WSS. We have developed a murine femoral artery model for studying changes in WSS ex vivo and show that the artery responds by upregulating inflammatory cytokines, adhesion molecules and growth factors consistent with previous in vivo findings.
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