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首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Grafted skeletal myoblast sheets attenuate myocardial remodeling in pacing-induced canine heart failure model.
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Grafted skeletal myoblast sheets attenuate myocardial remodeling in pacing-induced canine heart failure model.

机译:在起搏诱发的犬心力衰竭模型中,移植的骨骼成肌细胞片减弱了心肌重塑。

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OBJECTIVE: To overcome problems related to the intramyocardial injection of cells, including cell loss and a limited graft area, we developed a cell delivery system that uses tissue-engineered myoblast grafts grown as sheets. Here, we assessed the feasibility and efficacy of our method in a canine dilated cardiomyopathy model. METHODS: Skeletal myoblasts were incubated on temperature-responsive culture dishes, and the sheets of cells were detached by decreasing the temperature. Twelve dogs were given continuous ventricular pacing at 230 beats/min for 4 weeks; then the myoblast sheets (n = 5) were grafted onto the left ventricular wall or a sham operation was performed (n = 7). The number of cells was adjusted to 1.5 approximately 2.5 x 10(6) cells per graft, and each dog received approximately 20 grafts. RESULTS: The cell sheets were easily grafted onto a large area of the left ventricular surface, and there were no serious sequelae. Four weeks after graft implantation, echocardiography demonstrated that the left ventricular ejection fraction (graft, 26.0% +/- 5.6%; control, 19.5% +/- 6.8%; P < .05) and fractional shortening (graft, 17.9% +/- 3.6%; control, 7.8% +/- 2.1%; P < .05) were significantly ameliorated with reduced left ventricular dilatation (graft, 7.3 +/- 1.3 cm2; control, 10.2 +/- 0.4 cm2; P < .05) and increased wall thickness (graft, 5.6 +/- 0.7 mm; control, 4.4 +/- 0.6 mm; P < .05). Histologic evidence indicated the grafted myoblasts had survived, accompanied by a significant reduction in fibrosis and apoptosis, and a significant increase in proliferation. CONCLUSIONS: Grafting of skeletal myoblast sheets attenuated cardiac remodeling and improved cardiac performance. This novel method was feasible and effective in a large animal model, suggesting an innovative and promising strategy for treating patients with end-stage dilated cardiomyopathy.
机译:目的:为了克服与心肌内注射细胞有关的问题,包括细胞丢失和有限的移植面积,我们开发了一种细胞递送系统,该系统使用组织工程化成膜细胞的成肌细胞移植物。在这里,我们评估了我们的方法在犬扩张型心肌病模型中的可行性和有效性。方法:将骨骼肌成肌细胞在对温度敏感的培养皿上孵育,并通过降低温度使细胞表层分离。 12只狗以230次/分钟的速度连续心室起搏4周;然后将成肌细胞片(n = 5)移植到左心室壁或进行假手术(n = 7)。每个移植物的细胞数调整为1.5,约2.5 x 10(6)个细胞,每只狗接受约20个移植物。结果:细胞片易于移植到大面积的左心室表面,没有严重的后遗症。移植后四周,超声心动图显示左心室射血分数(移植,26.0%+/- 5.6%;对照组,19.5%+/- 6.8%; P <.05)和分数缩短(移植,17.9%+ /) -3.6%;对照,7.8%+/- 2.1%; P <.05)随着左心室扩张的减少(移植物,7.3 +/- 1.3 cm2;对照,10.2 +/- 0.4 cm2; P <.05)而得到明显改善)和增加的壁厚(嫁接,5.6 +/- 0.7毫米;对照,4.4 +/- 0.6毫米; P <.05)。组织学证据表明,嫁接的成肌细胞已经存活,伴随着纤维化和凋亡的明显减少,以及增殖的明显增加。结论:骨骼肌成肌细胞片的嫁接减弱了心脏重塑并改善了心脏性能。这种新方法在大型动物模型中是可行和有效的,这为治疗终末期扩张型心肌病患者提出了一种创新而有希望的策略。

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