Bioscience Division, Los Alamos National Laboratory, Los Alamos, New Mexico, USA.
Department of Bioengineering, Nick J. Holonyak Micro and Nanotechnology Laboratory, and Carle Illinois College of Medicine, University of Illinois Urbana-Champaign, Urbana, Illinois, USA.
Tissue Eng Part C Methods. 2021 Apr;27(4):242-252. doi: 10.1089/ten.TEC.2020.0292. Epub 2021 Mar 30.
Neuromuscular junctions (NMJs), specialized synapses between motor neurons and muscle fibers, are essential for muscle activity. A simple and reproducible cell-based NMJ platform is needed to test the impact of chemicals on the neuron-muscle communication. Our platform utilizes genetically modified neurons and muscle cells, optimized culture conditions, and commercially available multielectrode array system for recording action potentials. Neuronal cells (NSC34) were optogenetically modified with channelrhodopsin chimera to allow for simultaneous, light-mediated, millisecond-precise activation of neuronal population. This signal is propagated through functional synapses to the muscle fibers. Muscle cells (C2C12) were modified by incorporating gap junction protein (Connexin-43) to improve intracellular communication without affecting muscle differentiation. This communication between muscle fibers resulted in better signal propagation and signal strength. Optimized culture medium facilitated the growth and differentiation of both cell types together. Our system was validated using vecuronium, a muscle relaxant, which abolished the muscle response. This model provides a unique tool for establishing a NMJ platform that is easy to record and analyze. Potential applications include nondestructive long-term screening of drugs affecting the NMJ.
神经肌肉接头(NMJ)是运动神经元和肌肉纤维之间的特化突触,对于肌肉活动至关重要。需要一个简单且可重复的基于细胞的 NMJ 平台来测试化学物质对神经元-肌肉通讯的影响。我们的平台利用基因修饰的神经元和肌肉细胞、优化的培养条件以及市售的多电极阵列系统来记录动作电位。神经元细胞(NSC34)经过光遗传学修饰,与通道视紫红质嵌合体结合,可实现神经元群体的同时、光介导、毫秒级精确激活。该信号通过功能性突触传播到肌肉纤维。肌肉细胞(C2C12)通过整合间隙连接蛋白(Connexin-43)进行修饰,以改善细胞内通讯而不影响肌肉分化。肌肉纤维之间的这种通讯导致更好的信号传播和信号强度。优化的培养基促进了两种细胞类型的共同生长和分化。我们的系统使用肌肉松弛剂维库溴铵进行了验证,维库溴铵消除了肌肉反应。该模型提供了一个易于记录和分析的 NMJ 平台的独特工具。潜在的应用包括对影响 NMJ 的药物进行非破坏性的长期筛选。