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Schwann cells are activated by ATP released from neurons in an in vitro cellular model of Miller Fisher syndrome

机译:在Miller Fisher综合征的体外细胞模型中,雪旺细胞被神经元释放的ATP激活

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The neuromuscular junction is exposed to different types of insult, including mechanical trauma, toxins and autoimmune antibodies and, accordingly, has retained through evolution a remarkable ability to regenerate. Regeneration is driven by multiple signals that are exchanged among the cellular components of the junction. These signals are largely unknown. Miller Fisher syndrome is a variant of Guillain–Barré syndrome caused by autoimmune antibodies specific for epitopes of peripheral axon terminals. Using an animal model of Miller Fisher syndrome, we recently reported that a monoclonal anti-polysialoganglioside GQ1b antibody plus complement damages nerve terminals with production of mitochondrial hydrogen peroxide, which activates Schwann cells. Several additional signaling molecules are likely to be involved in the activation of the regeneration program in these cells. Using an in vitro cellular model consisting of co-cultured primary neurons and Schwann cells, we found that ATP is released by neurons injured by the anti-GQ1b antibody plus complement. Neuron-derived ATP acts as an alarm messenger for Schwann cells, where it induces the activation of intracellular pathways, including calcium signaling, cAMP and CREB, which, in turn, produce signals that promote nerve regeneration. These results contribute to defining the cross-talk taking place at the neuromuscular junction when it is attacked by anti-gangliosides autoantibodies plus complement, which is crucial for nerve regeneration and is also likely to be important in other peripheral neuropathies.
机译:神经肌肉接头暴露于不同类型的损伤,包括机械损伤,毒素和自身免疫抗体,因此通过进化保留了显着的再生能力。再生是由多个信号驱动的,这些信号在连接的细胞成分之间交换。这些信号很大程度上未知。 Miller Fisher综合征是Guillain-Barré综合征的一种变体,由特异性针对外周轴突末端表位的自身免疫抗体引起。使用Miller Fisher综合征的动物模型,我们最近报道了单克隆抗多唾液酸神经节苷脂GQ1b抗体加补体会损伤线粒体过氧化氢,从而激活神经细胞,从而刺激神经末梢。在这些细胞中,再生程序的激活可能还涉及其他几种信号分子。使用由共培养的原代神经元和雪旺氏细胞组成的体外细胞模型,我们发现ATP是由抗GQ1b抗体加补体损伤的神经元释放的。神经元衍生的ATP充当雪旺细胞的警报使者,在其中诱导细胞内途径的激活,包括钙信号传导,cAMP和CREB,这些反过来又产生促进神经再生的信号。这些结果有助于确定在神经肌肉接头受到抗神经节苷脂自身抗体加补体攻击时发生的串扰,这对神经再生至关重要,并且在其他周围神经病中也可能很重要。

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