Institute for Vision Research, University of Iowa, Iowa City, IA 52242, USA.
Invest Ophthalmol Vis Sci. 2013 May 1;54(5):3721-8. doi: 10.1167/iovs.13-11812.
Best disease is a macular dystrophy caused by mutations in the BEST1 gene. Affected individuals exhibit a reduced electro-oculographic (EOG) response to changes in light exposure and have significantly longer outer segments (OS) than age-matched controls. The purpose of this study was to investigate the anatomical changes in the outer retina during dark and light adaptation in unaffected and Best disease subjects, and to compare these changes to the EOG.
Unaffected (n = 11) and Best disease patients (n = 7) were imaged at approximately 4-minute intervals during an approximately 40-minute dark-light cycle using spectral domain optical coherence tomography (SD-OCT). EOGs of two subjects were obtained under the same conditions. Automated three-dimensional (3-D) segmentation allowed measurement of light-related changes in the distances between five retinal surfaces.
In normal subjects, there was a significant decrease in outer segment equivalent length (OSEL) of -2.14 μm (95% confidence interval [CI], -1.77 to -2.51 μm) 10 to 20 minutes after the start of light adaptation, while Best disease subjects exhibited a significant increase in OSEL of 2.07 μm (95% CI, 1.79-2.36 μm). The time course of the change in OS length corresponded to that of the EOG waveform.
Our results strongly suggest that the light peak phase of the EOG is temporally related to a decreased OSEL in normal subjects, and the lack of a light peak phase in Best disease subjects is associated with an increase in OSEL. One potential role of Bestrophin-1 is to trigger an increase in the standing potential that approximates the OS to the apical surface of the RPE to facilitate phagocytosis.
Best 病是一种由 BEST1 基因突变引起的黄斑营养不良。受影响的个体对光暴露变化的电生理眼图(EOG)反应降低,并且其外节(OS)比年龄匹配的对照明显更长。本研究的目的是研究在不受影响和 Best 病患者的暗适应和明适应过程中外视网膜的解剖结构变化,并将这些变化与 EOG 进行比较。
使用光谱域光学相干断层扫描(SD-OCT),在大约 40 分钟的明暗循环中,每隔大约 4 分钟对 11 名不受影响的和 7 名 Best 病患者进行成像。在相同条件下,获得了两名患者的 EOG。自动化的三维(3-D)分割允许测量五个视网膜表面之间与光相关的距离变化。
在正常受试者中,在明适应开始后 10 至 20 分钟,外节等效长度(OSEL)显著减少了-2.14μm(95%置信区间[CI],-1.77 至-2.51μm),而 Best 病患者的 OSEL 显著增加了 2.07μm(95%CI,1.79-2.36μm)。OS 长度变化的时间过程与 EOG 波形的时间过程相对应。
我们的结果强烈表明,EOG 的光峰相位与正常受试者的 OSEL 减少在时间上有关,而 Best 病患者缺乏光峰相位与 OSEL 的增加有关。Bestrophin-1 的一个潜在作用是引发静息电位的增加,使 OS 接近 RPE 的顶端表面,以促进吞噬作用。