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Mechanisms controlling axonal sprouting at the neuromuscular junction.

机译:控制轴突在神经肌肉连接处的机制。

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摘要

This review considers the relative roles of sprouting stimuli, perisynaptic Schwann cells and neuromuscular activity in axonal sprouting at the neuromuscular junction in partially denervated muscles. A number of sprouting stimuli, including insulin-like growth factor II, which are generated from inactive muscle fibers in partially denervated and paralyzed skeletal muscles, has been considered. There is also evidence that perisynaptic Schwann cells induce and guide axonal sprouting in adult partially denervated muscles. Excessive neuromuscular activity significantly reduces bridging of perisynaptic Schwann cell processes between innervated and denervated endplates and thereby inhibits axonal sprouting in partially denervated adult muscles. Elimination of neuromuscular activity is also detrimental to sprouting in these muscles, suggesting that calcium influx into the nerve is crucial for axonal sprouting. The role of neuromuscular activity in axonal sprouting will be considered critically in the context of the roles of sprouting stimuli and perisynaptic Schwann cells in the process of axonal sprouting.
机译:这项审查考虑发芽的刺激,突触周围的雪旺细胞和神经肌肉活动在部分失神经的肌肉的神经肌肉交界处的轴突发芽的相对作用。已经考虑到许多发芽刺激物,包括胰岛素样生长因子II,其是由部分失神经和瘫痪的骨骼肌中的无活性肌纤维产生的。也有证据表明突触周围的雪旺氏细胞在成年部分失神经的肌肉中诱导并引导轴突发芽。过度的神经肌肉活动显着减少了神经支配的和失神经的终板之间突触周围雪旺氏细胞过程的桥接,从而抑制了部分神经支配的成年肌肉中的轴突发芽。消除神经肌肉活动也不利于这些肌肉的发芽,这表明钙流入神经对于轴突发芽至关重要。在轴突发芽过程中发芽刺激和突触周围雪旺氏细胞的作用的背景下,将严格考虑神经肌肉活动在轴突发芽中的作用。

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