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A Novel Bioengineered Functional Motor Unit Platform to Study Neuromuscular Interaction

机译:一种研究神经肌肉相互作用的新型生物工程功能机动单元平台

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摘要

Background: In many neurodegenerative and muscular disorders, and loss of innervation in sarcopenia, improper reinnervation of muscle and dysfunction of the motor unit (MU) are key pathogenic features. In vivo studies of MUs are constrained due to difficulties isolating and extracting functional MUs, so there is a need for a simplified and reproducible system of engineered in vitro MUs. Objective: to develop and characterise a functional MU model in vitro, permitting the analysis of MU development and function. Methods: an immortalised human myoblast cell line was co-cultured with rat embryo spinal cord explants in a serum-free/growth fact media. MUs developed and the morphology of their components (neuromuscular junction (NMJ), myotubes and motor neurons) were characterised using immunocytochemistry, phase contrast and confocal microscopy. The function of the MU was evaluated through live observations and videography of spontaneous myotube contractions after challenge with cholinergic antagonists and glutamatergic agonists. Results: blocking acetylcholine receptors with α-bungarotoxin resulted in complete, cessation of myotube contractions, which was reversible with tubocurarine. Furthermore, myotube activity was significantly higher with the application of L-glutamic acid. All these observations indicate the formed MU are functional. Conclusion: a functional nerve-muscle co-culture model was established that has potential for drug screening and pathophysiological studies of neuromuscular interactions.
机译:背景:在许多神经变性和肌肉障碍中,并且在肌肉衰老症中丧失损失,肌肉肌肉和电机单元的功能障碍(MU)的不适当的重新感应是关键的致病特征。由于困难分离和提取功能QU的困难,对MU的体内研究受到限制,因此需要一种简化和可重复的体外肌肉的成型系统。目的:在体外开发和特征,允许亩发育和功能分析。方法:在无血清/生长事实培养基中将永生化的人肌细胞系与大鼠胚胎脊髓外植体共培养。使用免疫细胞化学,相位对比和共聚焦显微镜,表征了um的开发和它们组分的形态(神经肌肉结(NMJ),肌管和运动神经元)。通过胆碱能拮抗剂和谷氨酸糖尿病激动剂攻击后通过自发性肌室收缩的实时观察和摄像性评估MU的功能。结果:阻断乙酰胆碱受体与α-Bungarotoxin导致肌细胞收缩的完全停止,这与菱核碱可逆。此外,随着L-谷氨酸的施用,Myotube活性显着高。所有这些观察结果表明形成的MU是功能性的。结论:建立了功能性神经肌肉共培养模型,具有药物筛选和神经肌肉相互作用的病理生理学研究。

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