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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Visual Experience Facilitates BDNF-Dependent Adaptive Recruitment of New Neurons in the Postembryonic Optic Tectum
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Visual Experience Facilitates BDNF-Dependent Adaptive Recruitment of New Neurons in the Postembryonic Optic Tectum

机译:视觉体验有助于BDNF依赖性自适应招募新神经元在后期的光学构图中的新神经元

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摘要

Postembryonic brain development is sensitive to environmental input and sensory experience, but the mechanisms underlying healthy adaptive brain growth are poorly understood. Here, we tested the importance of visual experience on larval zebrafish (Danio rerio) postembryonic development of the optic tectum (OT), a midbrain structure involved in visually guided behavior. We first characterized postembryonic neurogenic growth in OT, in which new neurons are generated along the caudal tectal surface and contribute appositionally to anatomical growth. Restricting visual experience during development by rearing larvae in dim light impaired OT anatomical and neurogenic growth, specifically by reducing the survival of new neurons in the medial periventricular gray zone. Neuronal survival in the OT was reduced only when visual experience was restricted for the first 5 d following new neuron generation, suggesting that tectal neurons exhibit an early sensitive period in which visual experience protects these cells from subsequent neuronal loss. The effect of dim rearing on neuronal survival was mimicked by treatment with an NMDA receptor antagonist early, but not later, in a new neuron's life. Both dim rearing and antagonist treatment reduced BDNF production in the OT, and supplementing larvae with exogenous BDNF during dim rearing prevented neuronal loss, suggesting that visual experience protects new tectal neurons through neural activity-dependent BDNF expression. Collectively, we present evidence for a sensitive period of neurogenic adaptive growth in the larval zebrafish OT that relies on visual experience-dependent mechanisms.
机译:后期脑发育对环境投入和感官体验敏感,但健康适应性脑增长的机制尚不清楚。在这里,我们测试了视觉体验对幼虫斑马鱼(Danio Rerio)后的视神经(OT)的后期发育,其中参与视觉引导行为的中脑结构。我们首先在OT中表征后术后神经源性生长,其中新神经元沿尾部曲面表面产生,并与解剖学生长进行促进贡献。通过在昏暗的灯光下饲养幼虫在开发过程中限制视觉体验损害了OT解剖学和神经源性生长,特别是通过减少内侧镜灰色区域的新神经元的存活。只有当在新神经元发电后的前5天受到限制时,OT中的神经元存活率仅减少,表明细胞质神经元表现出早期敏感期,其中视觉体验免受随后的神经元损失保护这些细胞。通过早期用NMDA受体拮抗剂治疗,在新神经元的生命中,通过用NMDA受体拮抗剂治疗来模仿微调对神经元存活的影响。昏暗的饲养和拮抗剂治疗既可在曙光饲养期间用外源性BDNF补充BDNF生产,防止神经元损失,并通过神经活性依赖性BDNF表达保护新的细胞神经元的幼虫。总的来说,我们提出了依赖于视觉体验依赖机制的幼虫斑马鱼OT中神经源性自适应生长的敏感期的证据。

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