GABA and development of the Xenopus optic projection.

Shane C D Ferguson, S. McFarlane
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引用次数: 18

Abstract

In the developing visual system of Xenopus laevis retinal ganglion cell (RGC) axons extend through the brain towards their major target in the midbrain, the optic tectum. Enroute, the axons are guided along their pathway by cues in the environment. In vitro, neurotransmitters have been shown to act chemotropically to influence the trajectory of extending axons and regulate the outgrowth of developing neurites, suggesting that they may act to guide or modulate the growth of axons in vivo. Previous work by Roberts and colleagues (1987) showed that populations of cells within the developing Xenopus diencephalon and mid-brain express the neurotransmitter gamma amino butyric acid (GABA). Here we show that Xenopus RGC axons in the midoptic tract grow alongside the GABAergic cells and cross their GABA immunopositive nerve processes. Moreover, RGC axons and growth cones express GABA-A and GABA-B receptors, and GABA and the GABA-B receptor agonist baclofen both stimulate RGC neurite outgrowth in culture. Finally, the GABA-B receptor antagonist CGP54626 applied to the developing optic projection in vivo causes a dose-dependent shortening of the optic projection. These data indicate that GABA may act in vivo to stimulate the outgrowth of Xenopus RGC axons along the optic tract.
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GABA与爪蟾光学投影的发展。
在非洲爪蟾发育中的视觉系统中,视网膜神经节细胞(RGC)轴突通过大脑向中脑的主要目标视觉顶盖延伸。在这个过程中,轴突受到环境信号的引导。在体外,神经递质已被证明具有趋化作用,影响轴突延伸的轨迹并调节发育中的神经突的生长,这表明它们可能在体内引导或调节轴突的生长。Roberts及其同事(1987)先前的研究表明,发育中的间脑非洲爪蟾和中脑内的细胞群表达神经递质γ氨基丁酸(GABA)。本研究表明,视中束中的爪蟾RGC轴突与GABA能细胞一起生长,并穿过GABA免疫阳性的神经突。此外,RGC轴突和生长锥表达GABA- a和GABA- b受体,GABA和GABA- b受体激动剂巴氯芬在培养中均刺激RGC神经突的生长。最后,GABA-B受体拮抗剂CGP54626应用于体内发育中的视投影,导致视投影的剂量依赖性缩短。这些数据表明,GABA可能在体内刺激沿视束的爪蟾RGC轴突的生长。
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