首页> 美国卫生研究院文献>Journal of Neurophysiology >Effects of Axotomy on Cultured Sensory Neurons of Aplysia: Long-Term Injury-Induced Changes in Excitability and Morphology Are Mediated by Different Signaling Pathways
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Effects of Axotomy on Cultured Sensory Neurons of Aplysia: Long-Term Injury-Induced Changes in Excitability and Morphology Are Mediated by Different Signaling Pathways

机译:轴突切开术对海ly培养的感觉神经元的影响:长期损伤诱导的兴奋性和形态学变化是通过不同的信号通路介导的。

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摘要

To facilitate an understanding of injury-induced changes within the nervous system, we used a single-cell, in vitro model of axonal injury. Sensory neurons were individually dissociated from the CNS of Aplysia and placed into cell culture. The major neurite of some neurons was then transected (axotomized neurons). Axotomy in hemolymph-containing culture medium produced long-term hyperexcitability (LTH-E) and enhanced neuritic sprouting (long-term hypermorphogenesis [LTH-M]). Axotomy in the absence of hemolymph induced LTH-E, but not LTH-M. Hemolymph-derived growth factors may activate tyrosine receptor kinase (Trk) receptors in sensory neurons. To examine this possibility, we treated uninjured (control) and axotomized sensory neurons with K252a, an inhibitor of Trk receptor activity. K252a depressed the excitability of both axotomized and control neurons. K252a also produced a distinct pattern of arborizing outgrowth of neurites in both axotomized and control neurons. Protein kinase C (PKC) is an intracellular signal downstream of Trk; accordingly, we tested the effects of bisindolylmaleimide I (Bis-I), a specific inhibitor of PKC, on the axotomy-induced cellular changes. Bis-I blocked LTH-E, but did not disrupt LTH-M. Finally, because Trk activates the extracellular signal regulated kinase pathway in Aplysia sensory neurons, we examined whether this pathway mediates the injury-induced changes. Sensory neurons were axotomized in the presence of U0126, an inhibitor of mitogen-activated/extracellular receptor-regulated kinase. U0126 blocked the LTH-M due to axotomy, but did not impair LTH-E. Therefore distinct cellular signaling pathways mediate the induction of LTH-E and LTH-M in the sensory neurons.
机译:为了促进对神经系统内损伤引起的变化的理解,我们使用了单细胞体外轴突损伤模型。感觉神经元分别从海ly的中枢神经系统解离,并置于细胞培养物中。然后切除一些神经元的主要神经突(轴突切除的神经元)。在含血淋巴的培养基中进行轴切术可产生长期的过度兴奋性(LTH-E)和增强的神经萌芽(长期的过度形态发生[LTH-M])。在没有淋巴的情况下进行轴切术可诱导LTH-E,但不能诱导LTH-M。血淋巴来源的生长因子可能激活感觉神经元中的酪氨酸受体激酶(Trk)受体。为了检验这种可能性,我们用Trk受体活性抑制剂K252a治疗了未受伤的(对照)和切开后的感觉神经元。 K252a降低了被切开的神经元和对照神经元的兴奋性。 K252a还在轴突切除的神经元和对照神经元中产生了明显的神经突增生模式。蛋白激酶C(PKC)是Trk下游的细胞内信号;因此,我们测试了PKC的特异抑制剂bisindolylmaleimide I(Bis-I)对轴突切开术引起的细胞变化的影响。 Bis-I阻止了LTH-E,但没有破坏LTH-M。最后,由于Trk激活了Aplysia感觉神经元中的细胞外信号调节激酶途径,因此我们检查了该途径是否介导了损伤诱导的变化。在有丝分裂原活化/细胞外受体调节激酶抑制剂U0126的存在下,将感觉神经元切开。 U0126由于轴切术而阻断了LTH-M,但并未损害LTH-E。因此,不同的细胞信号传导途径介导了感觉神经元中LTH-E和LTH-M的诱导。

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