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首页> 外文期刊>Acta biomaterialia >Stem cell-loaded nanofibrous patch promotes the regeneration of infarcted myocardium with functional improvement in rat model
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Stem cell-loaded nanofibrous patch promotes the regeneration of infarcted myocardium with functional improvement in rat model

机译:载有干细胞的纳米纤维贴剂可促进梗塞心肌的再生,并改善大鼠模型的功能

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Myocardial infarction (MI) leads to the loss of cardiomyocytes, followed by left ventricular (LV) remodeling and cardiac dysfunction. The authors hypothesize that an elastic, biodegradable nanofibrous cardiac patch loaded with mesenchymal stem cells (MSC) could restrain LV remodeling and improve cardiac function after MI. Poly(ε-caprolactone)/gelatin (PG) nanofibers were fabricated by electrospinning, and the nanofibers displayed a porous and uniform nanofibrous structure with a diameter of 244 ± 51 nm. An MI model was established by ligation of the left anterior descending coronary artery of female Sprague-Dawley rats. The PG nanofibrous patch seeded with MSC, isolated from rat bone marrow, was implanted on the epicardium of the infarcted region of the LV wall of the heart. After transplantation, the PG-cell patch restricted the expansion of the LV wall effectively and reduced the scar size, and the density of the microvessels increased. Cells within the patch were able to migrate towards the scar tissue, and promoted new blood vessel formation at the infarct site. Angiogenesis and the cardiac functions improved significantly after 4 weeks of implantation. The MSC-seeded PG nanofibrous patches are demonstrated to provide sufficient mechanical support, to induce angiogenesis and to accelerate cardiac repair in a rat model of MI. The study highlights the positive impact of implantation of an MSC-seeded PG nanofibrous patch as a novel constituent for MI repair.
机译:心肌梗塞(MI)导致心肌细胞丢失,继而导致左心室(LV)重塑和心脏功能障碍。作者假设,装载了间充质干细胞(MSC)的弹性,可生物降解的纳米纤维心脏贴片可以抑制左心室重构,改善心肌梗死后的心脏功能。聚(ε-己内酯)/明胶(PG)纳米纤维是通过静电纺丝制备的,纳米纤维表现出多孔且均匀的纳米纤维结构,直径为244±51 nm。通过结扎雌性Sprague-Dawley大鼠的左前降支冠状动脉建立MI模型。从大鼠骨髓中分离出的用MSC植入的PG纳米纤维贴剂植入心脏左室壁梗塞区域的心外膜上。移植后,PG细胞贴片有效地限制了左室壁的扩张并减少了疤痕的大小,并且微血管的密度增加了。贴片内的细胞能够向疤痕组织迁移,并在梗塞部位促进新血管的形成。植入4周后,血管生成和心脏功能显着改善。 MSC接种的PG纳米纤维贴片在MI大鼠模型中提供了足够的机械支持,诱导了血管生成并加速了心脏修复。这项研究强调了植入MSC播种的PG纳米纤维贴片作为MI修复的新成分的积极影响。

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