4.1 Article

Long-term ERG analysis in the partially light-damaged mouse retina reveals regressive and compensatory changes

期刊

VISUAL NEUROSCIENCE
卷 23, 期 1, 页码 91-97

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/S0952523806231080

关键词

electroretinogram; oscillatory potentials; synaptic compensation

资金

  1. NEI NIH HHS [EY014793, EY13520] Funding Source: Medline
  2. NATIONAL EYE INSTITUTE [R01EY013520, R24EY014793] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Most of the blinding retinopathies are Clue to progressive photoreceptor degeneration. Treatment paradigms that are Currently being investigated include strategies to either halt or slow (town photoreceptor cell loss, or to replace useful vision with retina[ prosthesis. However, more information is required oil the pathophysiological changes of the diseased retina, in particular the inner retina, that Occur as a consequence of photoreceptor cell loss. Here we wished to use light damage as a stoppable insult to determine the Structural and functional consequences oil inner and Outer retina. with the overall goal of determining whether survival of a functional inner retina is possible even if the Outer retina is damaged. Mice were exposed to a 20-day light-damage period. Electroretinograms (ERG) and morphology were used to assess subsequent recovery. Outer retina was monitored analyzing a-waves. which represent photoreceptor cell responses, and histology. Integrity of the inner retina was monitored, analyzing b-waves and oscillatory potentials (OP1-OP4) and immunohistochemical markers for known proteins of the inner retina. All six ERG components were significantly Suppressed with respect to amplitudes and kinetics, but stabilized in a wave-dependent manner within 40-70 clays after the end of light exposure. As expected, damage of the outer retina was permanent. However, function of the inner retina was found to recover significantly. While b-wave amplitudes remained Suppressed to 60% of their baseline values, OP amplitudes recovered completely, and implicit times of all components, of the inner retina (b-wave and OP1-OP4) recovered to a level close to baseline values. Histological analyses confirmed the lack of permanent damage to the inner retina. In summary, these data suggests that the inner retina has the potential for significant recovery a, well as plasticity if treatment is available to stop the deterioration of the outer retina.

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