CÚRAM SFI Research Centre for Medical Devices, National University of Ireland Galway, Galway H92 W2TY, Ireland.
Department of Medical Biochemistry and Cell Biology at Institute of Biomedicine, Sahlgrenska Academy, The University of Gothenburg, Sweden.
Biomaterials. 2021 Feb;269:120641. doi: 10.1016/j.biomaterials.2020.120641. Epub 2021 Jan 4.
Critical limb ischemia (CLI) is characterized by the impairment of microcirculation, necrosis and inflammation of the muscular tissue. Although the role of glycans in mediating inflammation has been reported, changes in the glycosylation following muscle ischemia remains poorly understood. Here, a murine CLI model was used to show the increase of high mannose, α-(2, 6)-sialic acid and the decrease of hybrid and bisected N-glycans as glycosylation associated with the ischemic environment. Using this model, the efficacy of an elastin-like recombinamers (ELR) hydrogel was assessed. The hydrogel modulates key angiogenic signaling pathways, resulting in capillary formation, and ECM remodeling. Arterioles formation, reduction of fibrosis and anti-inflammatory macrophage polarization wa also induced by the hydrogel administration. Modulation of glycosylation was observed, suggesting, in particular, a role for mannosylation and sialylation in the mediation of tissue repair. Our study elucidates the angiogenic potential of the ELR hydrogel for CLI applications and identifies glycosylation alterations as potential new therapeutic targets.
肢体严重缺血(CLI)的特征是微循环受损、肌肉组织坏死和炎症。尽管已有研究报道糖链在介导炎症中的作用,但肌肉缺血后的糖基化变化仍知之甚少。在这里,我们使用一种小鼠 CLI 模型来显示高甘露糖、α-(2,6)-唾液酸的增加以及杂交和双分支 N-糖链的减少,这些变化与缺血环境有关。利用该模型,我们评估了弹性蛋白样重组体(ELR)水凝胶的疗效。该水凝胶调节关键的血管生成信号通路,从而导致毛细血管形成和细胞外基质重塑。水凝胶给药还诱导了小动脉形成、纤维化减少和抗炎型巨噬细胞极化。观察到糖基化的调节,表明甘露糖化和唾液酸化在介导组织修复中具有重要作用。我们的研究阐明了 ELR 水凝胶在 CLI 应用中的血管生成潜力,并确定了糖基化改变作为潜在的新治疗靶点。