首页> 美国卫生研究院文献>The Journal of Neuroscience >Severity of Infantile Nystagmus Syndrome-Like Ocular Motor Phenotype Is Linked to the Extent of the Underlying Optic Nerve Projection Defect in Zebrafish belladonna Mutant
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Severity of Infantile Nystagmus Syndrome-Like Ocular Motor Phenotype Is Linked to the Extent of the Underlying Optic Nerve Projection Defect in Zebrafish belladonna Mutant

机译:小儿眼球震颤综合症样眼运动表型的严重程度与斑马鱼颠茄突变体潜在的视神经投射缺陷的程度有关

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摘要

Infantile nystagmus syndrome (INS), formerly known as congenital nystagmus, is an ocular motor disorder in humans characterized by spontaneous eye oscillations (SOs) and, in several cases, reversed optokinetic response (OKR). Its etiology and pathomechanism is largely unknown, but misrouting of the optic nerve has been observed in some patients. Likewise, optic nerve misrouting, a reversed OKR and SOs with INS-like waveforms are observed in zebrafish belladonna (bel) mutants. We aimed to investigate whether and how misrouting of the optic nerve correlates with the ocular motor behaviors in bel larvae.OKR and SOs were quantified and subsequently the optic nerve fibers were stained with fluorescent lipophilic dyes. Eye velocity during OKR was reduced in larvae with few misprojecting optic nerve fibers and reversed in larvae with a substantial fraction of misprojecting fibers. All larvae with reversed OKR also displayed SOs. A stronger reversed OKR correlated with more frequent SOs. Since we did not find a correlation between additional retinal defects and ocular motor behavior, we suggest that axon misrouting is in fact origin of INS in the zebrafish animal model. Depending on the ratio between misprojecting ipsilateral and correctly projecting contralateral fibers, the negative feedback loop normally regulating OKR can turn into a positive loop, resulting in an increase in retinal slip. Our data not only give new insights into the etiology of INS but may also be of interest for studies on how the brain deals with and adapts to conflicting inputs.
机译:婴儿性眼球震颤综合征(INS),原名先天性眼球震颤,是人类的一种眼部运动障碍,其特征是自发性眼球震荡(SOs),在某些情况下,其视动反应逆转(OKR)。其病因和致病机理尚不清楚,但在某些患者中已观察到视神经误导。同样,在斑马鱼颠茄(bel)突变体中观察到视神经误导,OKR和具有INS样波形的SO反向。我们的目的是调查视神经误导是否与bel幼虫的眼动行为相关联以及如何与眼动行为相关联。定量OKR和SOs,然后用荧光亲脂性染料对视神经纤维进行染色。在OKR期间,幼虫的视线速度降低了,而视神经纤维的投射很少,而幼虫的眼球速度则出现了很大一部分的投射神经纤维的反转。 OKR反转的所有幼虫也会显示SO。反向OKR越强,SO越频繁。由于我们没有发现其他视网膜缺损与眼球运动行为之间的相关性,因此我们建议轴突误导实际上是斑马鱼动物模型中INS的起源。根据错误投射的同侧纤维和正确投射的对侧纤维之间的比率,正常调节OKR的负反馈回路可能会变成正回路,从而导致视网膜滑移增加。我们的数据不仅为INS的病因学提供了新的见解,而且对于大脑如何处理和适应冲突的输入的研究也可能会引起人们的兴趣。

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