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miR-22 eluting cardiovascular stent based on a self-healable spongy coating inhibits in-stent restenosis

机译:MiR-22基于自我恢复的海绵涂层洗脱心血管支架抑制支架再狭窄

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The in-stent restenosis (IRS) after the percutaneous coronary intervention contributes to the major treatment failure of stent implantation. MicroRNAs have been revealed as powerful gene medicine to regulate endothelial cells (EC) and smooth muscle cells (SMC) in response to vascular injury, providing a promising therapeutic candidate to inhibit IRS. However, the controllable loading and eluting of hydrophilic bioactive microRNAs pose a challenge to current lipophilic stent coatings. Here, we developed a microRNA eluting cardiovascular stent via the self-healing encapsulation process based on an amphipathic poly(ε-caprolactone)-poly(ethylene glycol)-poly(ε-caprolactone) (PCL-PEG-PCL, PCEC) triblock copolymer spongy network. The miR-22 was used as a model microRNA to regulate SMC. The dynamic porous coating realized the uniform and controllable loading of miR-22, reaching the highest dosage of 133?pmol?cm ?2 . We demonstrated that the sustained release of miR-22 dramatically enhanced the contractile phenotype of SMC without interfering with the proliferation of EC, thus leading to the EC dominating growth at an EC/SMC ratio of 5.4. More importantly, the [email?protected] coated stents showed reduced inflammation, low switching of SMC phenotype, and low secretion of extracellular matrix, which significantly inhibited IRS. This work provides a simple and robust coating platform for the delivery of microRNAs on cardiovascular stent, which may extend to other combination medical devices, and facilitate practical application of bioactive agents in clinics.
机译:经皮冠状动脉介入后的支架再狭窄(IRS)有助于支架植入的主要治疗失效。 MicroRNA已被揭示为强大的基因医学以调节内皮细胞(EC)和平滑肌细胞(SMC)响应血管损伤,为抑制IRS提供有前途的治疗候选者。然而,亲水性生物活性微大车的可控加载和洗脱对当前的亲脂性支架涂层构成挑战。在这里,我们通过基于两亲性聚(ε-己内酯)-poly(乙二醇)-poly(ε-己内酯)(PCL-PEG-PCL,PCEC)三嵌段共聚物,通过自愈合的封装过程开发了一种微愈合的心血管支架海绵网。 MIR-22用作MicroRNA以调节SMC。动态多孔涂层实现了miR-22的均匀和可控载荷,达到了133μm的最高剂量?pmol?cm?2。我们证明MIR-22的持续释放显着增强了SMC的收缩表型,而不会干扰EC的增殖,从而导致EC以EC / SMC比率为5.4的蛋白质。更重要的是,[邮箱吗?受保护的]涂层支架显示出降低的炎症,低切换的SMC表型,细胞外基质的低分泌物,显着抑制了IR。这项工作提供了一种简单且坚固的涂层平台,用于在心血管支架上递送MicroRNA,这可能延伸到其他组合医疗装置,并促进生物活性剂在诊所的实际应用。

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