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Pro-angiogenic effect of RANTES-loaded polysaccharide-based microparticles for a mouse ischemia therapy

机译:RANTES多糖基微粒对小鼠缺血的促血管生成作用

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摘要

Peripheral arterial disease results from the chronic obstruction of arteries leading to critical hindlimb ischemia. The aim was to develop a new therapeutic strategy of revascularization by using biodegradable and biocompatible polysaccharides-based microparticles (MP) to treat the mouse hindlimb ischemia. For this purpose, we deliver the pro-angiogenic chemokine Regulated upon Activation, Normal T-cell Expressed and Secreted (RANTES)/CCL5 in the mouse ischemic hindlimb, in solution or incorporated into polysaccharide-based microparticles. We demonstrate that RANTES-loaded microparticles improve the clinical score, induce the revascularization and the muscle regeneration in injured mice limb. To decipher the mechanisms underlying RANTES effects in vivo, we demonstrate that RANTES increases the spreading, the migration of human endothelial progenitor cells (EPC) and the formation of vascular network. The main receptors of RANTES i.e. CCR5, syndecan-4 and CD44 expressed at endothelial progenitor cell surface are involved in RANTES-induced in vitro biological effects on EPC. By using two RANTES mutants, [E66A]-RANTES with impaired ability to oligomerize, and [44AANA47]-RANTES mutated in the main RANTES-glycosaminoglycan binding site, we demonstrate that both chemokine oligomerization and binding site to glycosaminoglycans are essential for RANTES-induced angiogenesis in vitro. Herein we improved the muscle regeneration and revascularization after RANTES-loaded MP local injection in mice hindlimb ischemia.
机译:周围动脉疾病是由于动脉的慢性阻塞导致严重的后肢缺血所致。目的是通过使用可生物降解且生物相容性的多糖基微粒(MP)来治疗小鼠后肢缺血,从而开发出一种新的血运重建治疗策略。为此,我们在小鼠缺血性后肢中以溶液形式或掺入基于多糖的微粒中,递送活化后调节的促血管生成趋化因子,正常T细胞表达和分泌(RANTES)/ CCL5。我们证明,加载RANTES的微粒改善了临床评分,诱导了受损小鼠肢体的血运重建和肌肉再生。若要破译体内RANTES效应的机制,我们证明RANTES增加了人内皮祖细胞(EPC)的扩散,迁移和血管网络的形成。 RANTES的主要受体,即在内皮祖细胞表面表达的CCR5,syndecan-4和CD44与RANTES诱导的对EPC的体外生物学作用有关。通过使用两个RANTES突变体,寡聚能力受损的[E66A] -RANTES和在主要RANTES-糖胺聚糖结合位点突变的[ 44 AANA 47 ]-RANTES,我们证明趋化因子低聚和糖胺聚糖的结合位点对于RANTES诱导的体外血管生成是必不可少的。在这里,我们改善了小鼠后肢缺血中RANTES加载的MP局部注射后的肌肉再生和血运重建。

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