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A contactless electrical stimulator: application to fabricate functional skeletal muscle tissue

机译:非接触式电刺激器:用于制造功能性骨骼肌组织的应用

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摘要

Engineered skeletal muscle tissues are ideal candidates for applications in drug screening systems, bio-actuators, and as implantable constructs in tissue engineering. Electrical field stimulation considerably improves the differentiation of muscle cells to muscle myofibers. Currently used electrical stimulators often use direct contact of electrodes with tissue constructs or their culture medium, which may cause hydrolysis of the culture medium, joule heating of the medium, contamination of the culture medium due to products of electrodes corrosion, and surface fouling of electrodes. Here, we used an interdigitated array of electrodes combined with an isolator coverslip as a contactless platform to electrically stimulate engineered muscle tissue, which eliminates the aforementioned problems. The effective stimulation of muscle myofibers using this device was demonstrated in terms of contractile activity and higher maturation as compared to muscle tissues without applying the electrical field. Due to the wide array of potential applications of electrical stimulation to two- and three-dimensional (2D and 3D) cell and tissue constructs, this device could be of great interest for a variety of biological applications as a tool to create noninvasive, safe, and highly reproducible electric fields.
机译:工程化的骨骼肌组织是药物筛选系统,生物致动器以及组织工程中的可植入结构的理想选择。电场刺激极大地改善了肌肉细胞向肌肉肌纤维的分化。当前使用的电刺激器通常使用电极与组织构造或其培养基的直接接触,这可能引起培养基的水解,培养基的焦耳热,由于电极腐蚀产物而对培养基的污染以及电极的表面污染。 。在这里,我们使用叉指电极阵列与隔离盖玻片相结合作为非接触平台来电刺激工程化的肌肉组织,从而消除了上述问题。与不施加电场的肌肉组织相比,使用该装置可有效地刺激肌肉肌纤维的收缩活动和提高成熟度。由于电刺激在二维和二维(2D和3D)细胞和组织结构中的潜在应用广泛,因此该设备作为创建无创,安全,和高度可复制的电场。

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