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用于电刺激和定向肌肉组织工程的 Pt 电极叉指阵列。

Interdigitated array of Pt electrodes for electrical stimulation and engineering of aligned muscle tissue.

机构信息

WPI-Advanced Institute for Materials Research, Tohoku University, Sendai 980-8577, Japan.

出版信息

Lab Chip. 2012 Sep 21;12(18):3491-503. doi: 10.1039/c2lc40479f. Epub 2012 Jul 31.

Abstract

Engineered skeletal muscle tissues could be useful for applications in tissue engineering, drug screening, and bio-robotics. It is well-known that skeletal muscle cells are able to differentiate under electrical stimulation (ES), with an increase in myosin production, along with the formation of myofibers and contractile proteins. In this study, we describe the use of an interdigitated array of electrodes as a novel platform to electrically stimulate engineered muscle tissues. The resulting muscle myofibers were analyzed and quantified in terms of their myotube characteristics and gene expression. The engineered muscle tissues stimulated through the interdigitated array of electrodes demonstrated superior performance and maturation compared to the corresponding tissues stimulated through a conventional setup (i.e., through Pt wires in close proximity to the muscle tissue). In particular, the ES of muscle tissue (voltage 6 V, frequency 1 Hz and duration 10 ms for 1 day) through the interdigitated array of electrodes resulted in a higher degree of C2C12 myotube alignment (∼80%) as compared to ES using Pt wires (∼65%). In addition, higher amounts of C2C12 myotube coverage area, myotube length, muscle transcription factors and protein biomarkers were found for myotubes stimulated through the interdigitated array of electrodes compared to those stimulated using the Pt wires. Due to the wide array of potential applications of ES for two- and three-dimensional (2D and 3D) engineered tissues, the suggested platform could be employed for a variety of cell and tissue structures to more efficiently investigate their response to electrical fields.

摘要

工程化骨骼肌组织在组织工程、药物筛选和生物机器人等领域可能具有广泛的应用前景。众所周知,骨骼肌细胞在电刺激(ES)下能够分化,肌球蛋白产量增加,同时形成肌纤维和收缩蛋白。在这项研究中,我们描述了使用交错排列的电极作为一种新颖的平台来对工程化肌肉组织进行电刺激。根据肌管特征和基因表达对所得的肌肉肌纤维进行了分析和量化。与通过传统设置(即靠近肌肉组织的 Pt 线)进行刺激的相应组织相比,通过交错排列的电极刺激的工程化肌肉组织表现出更好的性能和成熟度。特别是,通过交错排列的电极对肌肉组织进行 ES(电压 6 V,频率 1 Hz,持续时间 10 ms,持续 1 天)可导致 C2C12 肌管的排列程度更高(约 80%),而通过 Pt 线进行 ES 的排列程度约为 65%。此外,与使用 Pt 线刺激的肌管相比,通过交错排列的电极刺激的 C2C12 肌管的覆盖率、肌管长度、肌肉转录因子和蛋白质生物标志物的含量更高。由于 ES 在二维(2D)和三维(3D)工程化组织中的应用具有广泛的潜在应用,因此建议的平台可以用于各种细胞和组织结构,以更有效地研究它们对电场的反应。

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