首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Tissue cardiomyoplasty using bioengineered contractile cardiomyocyte sheets to repair damaged myocardium: their integration with recipient myocardium.
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Tissue cardiomyoplasty using bioengineered contractile cardiomyocyte sheets to repair damaged myocardium: their integration with recipient myocardium.

机译:使用生物工程收缩性心肌细胞片修复受损的心肌的组织心肌成形术:它们与受体心肌的整合。

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BACKGROUND: We hypothesized that tissue-engineered contractile cardiomyocyte sheets without a scaffold would show histological and electrical integration with impaired myocardium, leading to the regeneration of infarcted myocardium. METHODS: Neonatal rat cardiomyocytes were cultured on Poly(N-isopropylacrylamide)-grafted polystyrene dishes and detached as a square cell sheet at 20 degrees C. Two sheets were stacked to make thicker contractile cardiac sheets. In cross-section, the stacked sheets looked like homogeneous heart-like tissue. Two weeks after rats were subjected to left anterior descending (LAD) ligation, two treatments were conducted: 1) cardiomyocyte sheet implantation (T group, n=10), and 2) fibroblast sheet implantation (F group, n=10). The control group underwent no additional treatment (C group, n=10). RESULTS: Echocardiography demonstrated that cardiac performance was significantly ameliorated in the T group 2, 4, and 8 weeks after implantation. The cardiomyocyte sheets became attachedto the infarcted myocardium, showed angiogenesis, expressed connexin-43, and appeared as homogeneous tissue in the myocardium Electrophysiological experiments showed a QRS complex with one peak in the treated scar area in the T group, but two peaks, indicative of branch block, in that of the other groups. Furthermore, the threshold for pacing of the recipient heart was lower in the T group than in the other groups. CONCLUSIONS: Cardiomyocyte sheets integrated with the impaired myocardium and improved cardiac performance in a model of ischemic myocardium. Techniques using such tissue-engineered cell sheets are introducing the promising concept of tissue cardiomyoplasty to the field of regenerative medicine.
机译:背景:我们假设没有支架的组织工程性收缩心肌细胞片会显示与受损心肌的组织学和电学整合,从而导致梗死心肌的再生。方法:将新生的大鼠心肌细胞在聚(N-异丙基丙烯酰胺)接枝的聚苯乙烯培养皿上培养,并在20摄氏度下以正方形细胞片的形式分离。将两片堆叠以制成较厚的收缩性心脏片。在横截面中,堆叠的片看起来像均匀的心形组织。大鼠进行左前降支(LAD)结扎后两周,进行了两种治疗:1)心肌细胞片植入(T组,n = 10),以及2)成纤维细胞片植入(F组,n = 10)。对照组不接受其他治疗(C组,n = 10)。结果:超声心动图显示,植入后第2、4和8周,T组的心脏功能明显改善。心肌细胞片附着在梗塞的心肌上,显示出血管生成,表达连接蛋白43,并在心肌中以均质组织的形式出现。电生理实验显示,QRS复合物在T组的治疗疤痕区域有一个峰,但有两个峰,表明分支块,在其他组中。此外,T组的接受心脏起搏阈值低于其他组。结论:在缺血性心肌模型中,心肌细胞片与受损的心肌整合并改善了心脏性能。使用这种组织工程细胞片的技术正在将组织心肌成形术的有前途的概念引入再生医学领域。

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