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心肌梗死后植入大鼠体内的细胞化支架的中期电生理效应

Medium-term Electrophysiologic Effects of a Cellularized Scaffold Implanted in Rats After Myocardial Infarction.

作者信息

Kolettis Theofilos M, Bagli Eleni, Barka Eleonora, Kouroupis Dimitrios, Kontonika Marianthi, Vilaeti Agapi D, Markou Maria, Roumpi Maria, Maltabe Violetta, La Rocca Vassilios, Agathopoulos Simeon, Fotsis Theodore

机构信息

Cardiology, Cardiovascular Research Institute, Ioannina, GRC.

Division of Biomedical Research, Institute of Molecular Biology and Biotechnology - Forth, Ioannina, GRC.

出版信息

Cureus. 2018 Jul 10;10(7):e2959. doi: 10.7759/cureus.2959.

Abstract

Background Cardiac repair strategies are being evaluated for myocardial infarctions, but the safety issues regarding their arrhythmogenic potential remain unresolved. By utilizing the in-vivo rat model, we have examined the medium-term electrophysiologic effects of a biomaterial scaffold that has been cellularized with spheroids of human adipose tissue, derived from mesenchymal stem cells and umbilical vein endothelial cells. Methods Mesenchymal stem cells, which exhibit adequate differentiation capacity, were co-cultured with umbilical vein endothelial cells and were seeded on an alginate based scaffold. After in-vitro characterization, the cellularized scaffold was implanted in (n=15) adult Wistar rats 15 min post ligation of the left coronary artery, with an equal number of animals serving as controls. Two weeks thereafter, monophasic action potentials were recorded and activation-mapping was performed with a multi-electrode array. An arrhythmia score for inducible ventricular tachyarrhythmias was calculated after programmed electrical stimulation. Results The arrhythmia score was comparable between the treated animals and controls. No differences were detected in the local conduction at the infarct border and in the voltage rise in monophasic action potential recordings. Treatment did not affect the duration of local repolarization, but tended to enhance its dispersion. Conclusions The fabricated bi-culture cellularized scaffold displayed favorable properties after in-vitro characterization. Medium-term electrophysiologic assessment after implantation in the infarcted rat myocardium revealed low arrhythmogenic potential, but the long-term effects on repolarization dispersion will require further investigation.

摘要

背景 心脏修复策略正在针对心肌梗死进行评估,但关于其致心律失常潜力的安全问题仍未解决。通过利用体内大鼠模型,我们研究了一种生物材料支架的中期电生理效应,该支架已用源自间充质干细胞和脐静脉内皮细胞的人脂肪组织球体进行了细胞化处理。方法 将具有足够分化能力的间充质干细胞与脐静脉内皮细胞共培养,并接种在基于藻酸盐的支架上。在体外表征后,将细胞化支架植入左冠状动脉结扎后15分钟的15只成年Wistar大鼠体内,另有同等数量的动物作为对照。此后两周,记录单相动作电位并用多电极阵列进行激活标测。在程序性电刺激后计算可诱导室性快速心律失常的心律失常评分。结果 治疗组动物和对照组的心律失常评分相当。在梗死边缘的局部传导和单相动作电位记录中的电压上升方面未检测到差异。治疗不影响局部复极化的持续时间,但倾向于增加其离散度。结论 制备的双培养细胞化支架在体外表征后显示出良好的特性。植入梗死大鼠心肌后的中期电生理评估显示致心律失常潜力较低,但对复极化离散度的长期影响需要进一步研究。

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