首页> 外文期刊>Development >Differential effects of cortical neurotrophic factors on development of lateral geniculate nucleus and superior colliculus neurons: anterograde and retrograde actions.
【24h】

Differential effects of cortical neurotrophic factors on development of lateral geniculate nucleus and superior colliculus neurons: anterograde and retrograde actions.

机译:皮质神经营养因子对外侧膝状核和上丘神经元发育的不同作用:顺行和逆行作用。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Neurotrophins strongly affect visual system development and plasticity. However, the mode of delivery and targets of neurotrophin action are still under debate. For instance, cortical NT-4/5 (neurotrophin 4/5; Ntf4/5) was shown to rescue lateral geniculate nucleus (LGN) neurons from monocular deprivation-induced atrophy suggesting a retrograde action on thalamic afferents. It is still unclear whether LGN neurons respond to NT-4/5 and other neurotrophins during development in animals with normal vision. We now show that infusions of NT-4/5 and NGF (nerve growth factor) into visual cortex at the onset and the peak of the critical period accelerated LGN neuron growth. BDNF (brain-derived neurotrophic factor) was ineffective. The effects of neurotrophin on LGN development were clearly dissociated from the effects at cortical level because soma growth of cortical layer IV and VI neurons was strongly promoted by BDNF. NT-4/5 was only effective at the onset, but no longer at the peak of the critical period suggesting a switch in neurotrophin dependency for these cortical cell classes. To dissociate retrograde and anterograde effects of the TrkB ligands, we analyzed the stratum griseum superficiale (SGS) of the superior colliculus, a target of visual cortical efferents. Indeed, TrkB-expressing inhibitory SGS neurons responded to cortical NT-4/5 infusion with somatic growth. Strikingly, the TrkB-expressing excitatory tectothalamic calbindin neurons in the SGS did not respond. This demonstrated for the first time a selective cell type-specific anterograde action of NT-4/5 and suggested for the LGN that anterograde as well as retrograde effects contribute to soma size regulation. Strikingly, cortical infusion of the cytokine LIF, which affects development of visual cortex neurochemical architecture, transiently inhibited growth of neurons in LGN, cortical layer IV and VI and SGS. In summary, the study presents three important results. First, central neurons regulate soma size development in an age-and ligand-specific fashion. Second, NT-4/5 and NGF accelerate LGN development in rats with normal vision while LIF delays growth. Third, anterogradely transported NT-4/5 effectively promotes neuronal maturation. These differential actions on subcortical neurons may contribute to the different effects of neurotrophins on visual system development and plasticity.
机译:神经营养蛋白强烈影响视觉系统发育和可塑性。然而,递送方式和神经营养蛋白作用的靶标仍在争论中。例如,显示皮质NT-4 / 5(神经营养蛋白4/5; Ntf4 / 5)可从单眼剥夺引起的萎缩中挽救外侧膝状核(LGN)神经元,表明对丘脑传入神经有逆行作用。尚不清楚在正常视力动物的发育过程中,LGN神经元是否对NT-4 / 5和其他神经营养素有反应。我们现在显示,NT-4 / 5和NGF(神经生长因子)在视皮层的开始和关键时期的峰值输注会加速LGN神经元的生长。 BDNF(脑源性神经营养因子)无效。神经营养蛋白对LGN发育的影响与皮质水平的影响明显分离,因为BDNF强烈促进了IV和VI皮质神经元的体细胞生长。 NT-4 / 5仅在发作时有效,但在关键时期的峰值不再有效,表明这些皮质细胞类型的神经营养素依赖性发生了变化。为了分离TrkB配体的逆行和顺行作用,我们分析了上丘(可视皮层出射的目标)的浅表层(SGS)。实际上,表达TrkB的抑制性SGS神经元对皮层NT-4 / 5的注入伴随着体细胞的生长。令人惊讶的是,在SGS中表达TrkB的兴奋性丘脑土Calbindin神经元没有反应。这首次证明了NT-4 / 5具有选择性的细胞类型特异的顺行作用,并建议LGN顺行以及逆行作用有助于调节体型。令人惊讶的是,皮层注射细胞因子LIF会影响视觉皮层神经化学结构的发育,从而会暂时抑制LGN,皮层IV和VI和SGS中神经元的生长。总之,该研究提出了三个重要结果。首先,中枢神经元以年龄和配体特异性方式调节躯体大小的发育。其次,NT-4 / 5和NGF促进视力正常大鼠的LGN发育,而LIF则延迟生长。第三,顺行转运NT-4 / 5有效促进神经元成熟。这些对皮层下神经元的不同作用可能导致神经营养蛋白对视觉系统发育和可塑性的不同影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号