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视力减退小鼠模型中的畏光和异常持续瞳孔反应。

Photophobia and abnormally sustained pupil responses in a mouse model of bradyopsia.

作者信息

Kuburas Adisa, Thompson Stewart, Artemyev Nikolai O, Kardon Randy H, Russo Andrew F

机构信息

Department of Molecular Physiology and Biophysics, University of Iowa, Iowa City, Iowa, United States.

Department of Ophthalmology and Visual Sciences, University of Iowa, Iowa City, Iowa, United States.

出版信息

Invest Ophthalmol Vis Sci. 2014 Sep 25;55(10):6878-85. doi: 10.1167/iovs.14-14784.

Abstract

PURPOSE

Mutations in the RGS9 gene cause the visual disorder bradyopsia, which includes difficulty adapting to changes in light and photophobia. The purpose of this study was to determine whether lack of Rgs9 also caused photophobia-like behavior in Rgs9 knockout (Rgs9-/-) mice and to identify useful diagnostic measures of Rgs9 dysfunction.

METHODS

We measured two behavioral responses to light and the pupillary light reflex to determine the form and basis of photophobia in Rgs9-/- mice.

RESULTS

Rgs9-/- mice spent less time than wild-type mice in both dim and bright light. The mice also showed increased sensitivity to light in negative masking behavior, with a half maximal response at 0.08 lux (0.01 μW·cm(-2)) in Rgs9-/- mice compared to 5.0 lux (0.85 μW·cm(-2)) in wild-type mice. These behaviors were not due to increased anxiety or increased pupil size causing more light to enter the eye. Rather, constriction of the pupil showed that Rgs9-/- mice had an abnormally sustained response to light across multiple irradiance measurement pathways.

CONCLUSIONS

Rgs9-/- mice recapitulate a photophobia phenotype of bradyopsia, and the pupil light reflex identifies a simple means to screen for irradiance measurement abnormalities in bradyopsia and potentially other genetic disorders involving photophobia.

摘要

目的

RGS9基因的突变会导致视觉障碍——视力减退,其中包括适应光线变化困难和畏光。本研究的目的是确定Rgs9的缺失是否也会在Rgs9基因敲除(Rgs9-/-)小鼠中引发类似畏光的行为,并确定Rgs9功能障碍的有用诊断方法。

方法

我们测量了对光的两种行为反应以及瞳孔对光反射,以确定Rgs9-/-小鼠畏光的形式和基础。

结果

在暗光和亮光环境下,Rgs9-/-小鼠停留的时间均比野生型小鼠短。在负性掩蔽行为中,这些小鼠对光的敏感性也有所增加,Rgs9-/-小鼠的半数最大反应出现在0.08勒克斯(0.01微瓦·厘米-2),而野生型小鼠为5.0勒克斯(0.85微瓦·厘米-2)。这些行为并非由于焦虑增加或瞳孔变大导致更多光线进入眼睛所致。相反,瞳孔收缩表明,Rgs9-/-小鼠在多个辐照度测量途径中对光的反应异常持久。

结论

Rgs9-/-小鼠重现了视力减退的畏光表型,瞳孔对光反射确定了一种简单的方法,可用于筛查视力减退以及可能涉及畏光的其他遗传疾病中的辐照度测量异常。

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