Pillers D A, Weleber R G, Woodward W R, Green D G, Chapman V M, Ray P N
Department of Pediatrics, Oregon Health Sciences University, Portland 97201-3042.
Invest Ophthalmol Vis Sci. 1995 Feb;36(2):462-6.
To identify an animal model for the abnormal scotopic electroretinogram found in a majority of Duchenne and Becker muscular dystrophy patients.
Ganzfeld electroretinograms were recorded in dark-adapted normal C57BL/6 mice, and two strains of mice with different X-linked muscular dystrophy mutations (mdx and mdxCv3). Responses for the right eye were averaged and the amplitudes and implicit times of the a-wave and b-wave were measured. The electroretinogram was digitally filtered to extract the oscillatory potentials. Statistical analyses included one-way analysis of variance and the Scheffé S test.
While the electroretinogram in mdx was normal, in mdxCv3 the scotopic b-wave was markedly reduced and the oscillatory potentials were delayed, similar to changes observed in Duchenne and Becker muscular dystrophy patients. Some of the mdxCv3 animals demonstrated negative configuration electroretinograms, with the b-wave amplitude reduced compared to that of the a-wave.
Abnormalities found in the electroretinograms of Duchenne and Becker muscular dystrophy patients led to the identification of dystrophin in human retina and the discovery that dystrophin is required for normal retinal electrophysiology. These results indicate that mdxCv3 is a model for elucidating the role of dystrophin in retina and suggest that dystrophin isoforms, consisting of only the C-terminal domains of the full-length protein, may be important to the development of normal retinal electrical potentials.
确定一种动物模型,用于研究大多数杜兴氏和贝克氏肌营养不良症患者中发现的异常暗视视网膜电图。
在暗适应的正常C57BL/6小鼠以及两种具有不同X连锁肌营养不良突变的小鼠品系(mdx和mdxCv3)中记录全视野视网膜电图。对右眼的反应进行平均,并测量a波和b波的振幅及隐含时间。对视网膜电图进行数字滤波以提取振荡电位。统计分析包括单因素方差分析和谢费S检验。
mdx小鼠的视网膜电图正常,而mdxCv3小鼠的暗视b波明显降低,振荡电位延迟,这与杜兴氏和贝克氏肌营养不良症患者中观察到的变化相似。一些mdxCv3动物表现出负性视网膜电图构型,b波振幅相对于a波降低。
杜兴氏和贝克氏肌营养不良症患者视网膜电图中发现的异常导致了人类视网膜中肌营养不良蛋白的鉴定,以及发现肌营养不良蛋白是正常视网膜电生理所必需的。这些结果表明mdxCv3是阐明肌营养不良蛋白在视网膜中作用的模型,并提示仅由全长蛋白的C末端结构域组成的肌营养不良蛋白异构体可能对正常视网膜电位的发育很重要。