Tsai Tina I, Barboni Mirella Telles Salgueiro, Nagy Balázs Vince, Roux Michel J, Rendon Alvaro, Ventura Dora Fix, Kremers Jan
Department of Ophthalmology, University Hospital Erlangen, Erlangen, Germany 2Department of Biology, Animal Physiology, FAU Erlangen-Nürnberg, Erlangen, Germany.
Núcleo de Neurociências e Comportamento, Universidade de São Paulo, São Paulo, Brazil 4Departmento de Psicologia Experimental, Instituto de Psicologia, Universidade de São Paulo, São Paulo, Brazil.
Invest Ophthalmol Vis Sci. 2016 Oct 1;57(13):5788-5798. doi: 10.1167/iovs.16-19432.
The dystrophin mouse mutant mdx3Cv exhibits scotopic electroretinograpic (ERG) abnormalities, which resemble clinical changes observed in Duchenne muscular dystrophy (DMD) patients. In the present study, ERGs obtained from mdx3Cv and their wild-type littermates under scotopic, mesopic, and photopic conditions were analyzed to provide further insight on the affected retinal pathways, and to compare them with human data.
Electroretinograms of mdx3Cv (n = 9) and age-matched C57BL/6J mice (n = 10) included the scotopic full-field flash (for outer retinal deficits in rod pathway), scotopic threshold response (for inner retinal integrity), photopic flash, sinusoidal flicker (for outer retinal deficits in cone pathway), mesopic rapid-on/-off sawtooth flicker, and photopic long-duration flash measurements (for separate ON-/OFF-responses under different conditions).
The mdx3Cv mice exhibited diminished and delayed scotopic and photopic ERGs, particularly in their b-wave and oscillatory potentials. Interestingly, homologues to the a- and b-wave of the mesopic ON-response were affected in their peak/trough times but not in their amplitude, whereas changes to both features were uncovered for photopic ON-response and sinusoidal flicker. Mesopic and photopic OFF-components were within the norm.
Abnormal scotopic and photopic flash ERGs were observed in mdx3Cv, which corroborate with deficits that are likely restricted to the level of photoreceptor-to-bipolar cell transmission. Further overlaps between mdx3Cv mice and DMD patients exist, including asymmetrical ON versus OFF ERG alterations under mesopic versus photopic vision. In mice, ON-pathway function is compromised, whereas the OFF-pathway is spared.
肌营养不良蛋白小鼠突变体mdx3Cv表现出暗视视网膜电图(ERG)异常,类似于杜氏肌营养不良症(DMD)患者观察到的临床变化。在本研究中,分析了mdx3Cv及其野生型同窝小鼠在暗视、中间视觉和明视条件下获得的ERG,以进一步深入了解受影响的视网膜通路,并将它们与人类数据进行比较。
mdx3Cv(n = 9)和年龄匹配的C57BL/6J小鼠(n = 10)的视网膜电图包括暗视全视野闪光(用于检测视杆通路中外层视网膜缺陷)、暗视阈值反应(用于检测内层视网膜完整性)、明视闪光、正弦闪烁(用于检测视锥通路中外层视网膜缺陷)、中间视觉快速开/关锯齿状闪烁以及明视长时间闪光测量(用于在不同条件下分离开/关反应)。
mdx3Cv小鼠的暗视和明视ERG减弱且延迟,尤其是在其b波和振荡电位方面。有趣的是,中间视觉开反应的a波和b波的同源物在其峰值/谷值时间受到影响,但幅度未受影响,而明视开反应和正弦闪烁的这两个特征均有变化。中间视觉和明视关成分在正常范围内。
在mdx3Cv中观察到异常的暗视和明视闪光ERG,这与可能仅限于光感受器到双极细胞传递水平的缺陷相符。mdx3Cv小鼠和DMD患者之间存在进一步的重叠,包括中间视觉与明视下ERG开与关改变的不对称性。在小鼠中,开通路功能受损,而关通路未受影响。