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电场刺激整合到灌注生物反应器中用于心脏组织工程。

Electric field stimulation integrated into perfusion bioreactor for cardiac tissue engineering.

机构信息

Avram and Stella Goldstein-Goren Department of Biotechnology Engineering, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

出版信息

Tissue Eng Part C Methods. 2010 Dec;16(6):1417-26. doi: 10.1089/ten.TEC.2010.0068. Epub 2010 May 10.

Abstract

We describe herein the features of a novel cultivation system, combining electrical stimulation with medium perfusion for producing thick, functional cardiac patches. A custom-made electrical stimulator was integrated via inserting two carbon rod electrodes into a perfusion bioreactor, housing multiple neonatal Sprague-Dawley rat cardiac cell constructs between two 96% open-pore-area fixing nets. The stimulator produced adjustable stimulation waveform (i.e., duty cycle, number of stimulating channels, maximum stimulation amplitude, etc.), specially designed for cardiac cell stimulation. The cell constructs were subjected to a homogenous fluid flow regime and electrical stimulation under conditions optimal for cell excitation. The stimulation threshold in the bioreactor was set by first determining its value in a Petri dish under a microscope, and then matching the current density in the two cultivation systems by constructing electric field models. The models were built by Comsol Multiphysics software using the exact three-dimensional geometry of the two cultivation systems. These models illustrate, for the first time, the local electric conditions required for cardiomyocyte field excitation and they confirmed the uniformity of the electrical field around the cell constructs. Bioreactor cultivation for only 4 days under perfusion and continuous electrical stimulus (74.4 mA/cm², 2 ms, bipolar, 1 Hz) promoted cell elongation and striation in the cell constructs and enhanced the expression level of Connexin-43, the gap junction protein responsible for cell-cell coupling. These results thus confirm the validity of the electrical field model in predicting the optimal electrical stimulation in a rather complex cultivation system, a perfusion bioreactor.

摘要

我们在此描述了一种新型培养系统的特点,该系统将电刺激与培养基灌注相结合,用于产生厚的、功能齐全的心脏贴片。通过将两个碳棒电极插入灌注式生物反应器中,我们将一个定制的电刺激器集成到其中,在两个 96%开孔面积固定网之间容纳多个新生 Sprague-Dawley 大鼠心脏细胞构建体。刺激器产生可调节的刺激波形(例如,占空比、刺激通道数量、最大刺激幅度等),专门用于心脏细胞刺激。细胞构建体在最佳的细胞激发条件下经历均匀的流体流动和电刺激。在生物反应器中设置刺激阈值,首先在显微镜下在培养皿中确定其值,然后通过构建电场模型使两个培养系统中的电流密度相匹配。模型使用 Comsol Multiphysics 软件通过两个培养系统的确切三维几何形状构建。这些模型首次说明了用于心肌细胞场激发的局部电场条件,并证实了细胞构建体周围电场的均匀性。在灌注和连续电刺激(74.4 mA/cm²,2 ms,双极,1 Hz)下仅培养 4 天,促进了细胞构建体中的细胞伸长和条纹形成,并增强了间隙连接蛋白 Connexin-43 的表达水平,该蛋白负责细胞-细胞偶联。因此,这些结果证实了电场模型在预测相当复杂的灌注式生物反应器培养系统中最佳电刺激的有效性。

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