4.3 Article

The Involvement of the Oxidative Stress in Murine Blue LED Light-Induced Retinal Damage Model

Journal

BIOLOGICAL & PHARMACEUTICAL BULLETIN
Volume 40, Issue 8, Pages 1219-1225

Publisher

PHARMACEUTICAL SOC JAPAN
DOI: 10.1248/bpb.b16-01008

Keywords

blue light emitting diode; age-related macular degeneration; N-acetylcysteine

Funding

  1. Grants-in-Aid for Scientific Research [15J07651] Funding Source: KAKEN

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The aim of study was to establish a mouse model of blue light emitting diode (LED) light-induced retinal damage and to evaluate the effects of the antioxidant N-acetylcysteine (NAC). Mice were exposed to 400 or 800 lx blue LED light for 2 h, and were evaluated for retinal damage 5d later by electroretinogram amplitude and outer nuclear layer (ONL) thickness. Additionally, we investigated the effect of blue LED light exposure on shorts-wave-sensitive opsin (S-opsin), and rhodopsin expression by immunohistochemistry. Blue LED light induced light intensity dependent retinal damage and led to collapse of S-opsin and altered rhodopsin localization from inner and outer segments to ONL. Conversely, NAC administered at 100 or 250 mg/kg intraperitoneally twice a day, before dark adaptation and before light exposure. NAC protected the blue LED light-induced retinal damage in a dose-dependent manner. Further, blue LED light-induced decreasing of S-opsin levels and altered rhodopsin localization, which were suppressed by NAC. We established a mouse model of blue LED light-induced retinal damage and these findings indicated that oxidative stress was partially involved in blue LED light-induced retinal damage.

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