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首页> 外文期刊>Acta biomaterialia >Angiogenic peptide nanofibers repair cardiac tissue defect after myocardial infarction
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Angiogenic peptide nanofibers repair cardiac tissue defect after myocardial infarction

机译:血管生成肽纳面纤维在心肌梗死后修复心脏组织缺陷

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Myocardial infarction remains one of the top leading causes of death in the world and the damage sustained in the heart eventually develops into heart failure. Limited conventional treatment options due to the inability of the myocardium to regenerate after injury and shortage of organ donors require the development of alternative therapies to repair the damaged myocardium. Current efforts in repairing damage after myocardial infarction concentrates on using biologically derived molecules such as growth factors or stem cells, which carry risks of serious side effects including the formation of teratomas. Here, we demonstrate that synthetic glycosaminoglycan (GAG) mimetic peptide nanofiber scaffolds induce neovascularization in cardiovascular tissue after myocardial infarction, without the addition of any biologically derived factors or stem cells. When the GAG mimetic nanofiber gels were injected in the infarct site of rodent myocardial infarct model, increased VEGF-A expression and recruitment of vascular cells was observed. This was accompanied with significant degree of neovascularization and better cardiac performance when compared to the control saline group. The results demonstrate the potential of future clinical applications of these bioactive peptide nanofibers as a promising strategy for cardiovascular repair.
机译:心肌梗死仍然是世界上死亡的最大原因之一,心脏损失最终发展成为心力衰竭。有限的常规治疗方案由于心肌不能在伤害后重新生成,器官捐赠者短缺需要开发替代疗法以修复受损的心肌。目前在心肌梗死后修复损伤的努力浓缩血液衍生的分子如生长因子或干细胞,这带来了严重副作用的风险,包括形成畸胎瘤。在这里,我们证明了合成糖胺聚糖(GAG)模拟肽纳米纤维支架在心肌梗死后诱导心血管组织中的新血管形成,而不添加任何生物衍生的因子或干细胞。当在啮齿动物心肌梗死模型的梗塞部位注入宫颈纳米纤维凝胶时,观察到增加VEGF-A表达和血管细胞的募集。与对照盐水组相比,这伴随着显着的新血管形成和更好的心脏能。结果表明,这些生物活性肽纳米纤维未来临床应用的潜力作为心血管修复的有希望的策略。

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