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IL10 改变了结扎小鼠股动脉后的侧支循环巨噬细胞的极化和后肢再灌注。

IL10 Alters Peri-Collateral Macrophage Polarization and Hind-Limb Reperfusion in Mice after Femoral Artery Ligation.

机构信息

Department of Trauma-, Hand- and Reconstructive Surgery, Johann-Wolfgang-Goethe-University, 60590 Frankfurt am Main, Germany.

Max-Planck Institute for Heart- and Lung-Research, 61231 Bad Nauheim, Germany.

出版信息

Int J Mol Sci. 2020 Apr 17;21(8):2821. doi: 10.3390/ijms21082821.

Abstract

Arteriogenesis is a process by which a pre-existing arterioarterial anastomosis develops into a functional collateral network following an arterial occlusion. Alternatively activated macrophages polarized by IL10 have been described to promote collateral growth. This study investigates the effect of different levels of IL10 on hind-limb reperfusion and the distribution of perivascular macrophage activation types in mice after femoral artery ligation (FAL). IL10 and anti-IL10 were administered before FAL and the arteriogenic response was measured by Laser-Doppler-Imaging perioperatively, after 3, 7, and 14 d. Reperfusion recovery was accelerated when treated with IL10 and impaired with anti-IL10. Furthermore, symptoms of ischemia on ligated hind-limbs had the highest incidence after application of anti-IL10. Perivascular macrophages were immunohistologically phenotyped using CD163 and CD68 in adductor muscle segments. The proportion of alternatively activated macrophages (CD163/CD68) in relation to classically activated macrophages (CD163/CD68) observed was the highest when treated with IL10 and suppressed with anti-IL10. This study underlines the proarteriogenic response with increased levels of IL10 and demonstrates an in-vivo alteration of macrophage activation types in the perivascular bed of growing collaterals.

摘要

动脉生成是指在动脉闭塞后,预先存在的动脉-动脉吻合通过 IL10 极化的 alternatively activated macrophages 发育成功能性侧支网络。本研究旨在探讨不同水平的 IL10 对小鼠股动脉结扎(FAL)后后肢再灌注和血管周巨噬细胞激活类型分布的影响。在 FAL 前给予 IL10 和抗 IL10,并在手术前后、3、7 和 14 天通过激光多普勒成像测量动脉生成反应。用 IL10 处理可加速再灌注恢复,用抗 IL10 处理则会损害再灌注恢复。此外,在应用抗 IL10 后,结扎后肢的缺血症状发生率最高。使用 CD163 和 CD68 在收肌段对血管周巨噬细胞进行免疫组织化学表型分析。用 IL10 处理时观察到的 alternatively activated macrophages(CD163/CD68)与 classically activated macrophages(CD163/CD68)的比例最高,而用抗 IL10 处理时则受到抑制。本研究强调了高水平的 IL10 具有促进动脉生成的反应,并证明了在生长侧支的血管周床中体内巨噬细胞激活类型的改变。

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