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CNGB3基因突变会导致严重的视杆细胞功能障碍。

CNGB3 mutations cause severe rod dysfunction.

作者信息

Maguire J, McKibbin M, Khan K, Kohl S, Ali M, McKeefry D

机构信息

a School of Optometry and Vision Sciences , University of Bradford , Bradford , West Yorkshire , UK.

b Department of Ophthalmology , St. James's University Teaching Hospital , Leeds , UK.

出版信息

Ophthalmic Genet. 2018 Jan-Feb;39(1):108-114. doi: 10.1080/13816810.2017.1368087. Epub 2017 Sep 20.

Abstract

PURPOSE

Congenital achromatopsia or rod monochromatism is a rare autosomal recessive condition defined by a severe loss of cone photoreceptor function in which rods purportedly retain normal or near-to-normal function. This report describes the results of electroretinography in two siblings with CNGB3-associated achromatopsia.

METHODS

Full field light- and dark-adapted electroretinograms (ERGs) were recorded using standard protocols detailed by the International Society for Clinical Electrophysiology of Vision (ISCEV). We also examined rod-mediated ERGs using series of stimuli that varied over a 6 log unit range of retinal illuminances (-1.9-3.5 log scotopic trolands).

RESULTS

Dark-adapted ERGs in achromatopsia patients exhibited severely reduced b-wave amplitudes with abnormal b:a ratios (1.3 and 0.6). In comparison, the reduction in a-wave amplitude was less marked. The rod-mediated ERG took on an electronegative appearance at high-stimulus illuminances.

CONCLUSION

Although the defect that causes achromatopsia is primarily in the cone photoreceptors, our results reveal an accompanying disruption of rod function that is more severe than has previously been reported. The differential effects on the b-wave relative to the a-wave points to an inner-retinal locus for the disruption of rod function in these patients.

摘要

目的

先天性全色盲或视杆单色视是一种罕见的常染色体隐性疾病,其特征为视锥光感受器功能严重丧失,而视杆功能据称保持正常或接近正常。本报告描述了两名患有与CNGB3相关的全色盲的同胞的视网膜电图结果。

方法

使用国际临床视觉电生理学会(ISCEV)详细说明的标准方案记录全视野明适应和暗适应视网膜电图(ERG)。我们还使用一系列在6个对数单位范围的视网膜照度(-1.9至3.5对数暗视 Trolands)内变化的刺激来检查视杆介导的ERG。

结果

全色盲患者的暗适应ERG显示b波振幅严重降低,b:a比值异常(分别为1.3和0.6)。相比之下,a波振幅的降低不太明显。在高刺激照度下,视杆介导的ERG呈现出负电性外观。

结论

尽管导致全色盲的缺陷主要存在于视锥光感受器中,但我们的结果显示视杆功能同时受到破坏,且比先前报道的更为严重。相对于a波,对b波的不同影响表明这些患者视杆功能破坏的部位在内视网膜。

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