Angiotensin II type 1 receptor blockade suppresses light-induced neural damage in the mouse retina

被引:29
作者
Narimatsu, Toshio [1 ,2 ]
Ozawa, Yoko [1 ,2 ]
Miyake, Seiji [1 ]
Nagai, Norihiro [1 ,2 ]
Tsubota, Kazuo [2 ]
机构
[1] Keio Univ, Sch Med, Lab Retinal Cell Biol, Shinjuku Ku, Tokyo 1608582, Japan
[2] Keio Univ, Sch Med, Dept Ophthalmol, Shinjuku Ku, Tokyo 1608582, Japan
关键词
Light; Retina; Apoptosis; Angiotensin II type 1 receptor; Oxidative stress; INDUCED PHOTORECEPTOR APOPTOSIS; IN-VIVO; RENAL PROTECTION; OXIDATIVE STRESS; VISUAL CYCLE; CELL-DEATH; KAPPA-B; DEGENERATION; INFLAMMATION; MICE;
D O I
10.1016/j.freeradbiomed.2014.03.020
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Exposure to light contributes to the development and progression of retinal degenerative diseases. However, the mechanisms underlying light-induced tissue damage are not fully understood. Here, we examined the role of angiotensin II type I receptor (AT1R) signaling: which is part of the renin-angiotensin system, in light-induced retinal damage. Light-exposed Balb/c mice that were treated with the AT1R blockers (angiotensin II receptor blockers; ARBs) valsartan, losartan, and candesartan before and after the light exposure exhibited attenuated visual function impairment, compared to vehicle-treated mice. This effect was dose-dependent and observed across the ARB class of inhibitors. Further evaluation of valsartan showed that it suppressed a number of light-induced retinal effects, including thinning of the photoreceptor cell layer caused by apoptosis, shortening of the photoreceptor cell outer segment, and increased levels of reactive oxygen species (ROS). The role of ROS in retinal pathogenesis was investigated further using the antioxidant N-acetyl-L-cysteine (NAC). Treatment of light-exposed mice with NAC before the light exposure suppressed the visual function impairment and photoreceptor cell histological changes due to apoptosis. Moreover, treatment with valsartan or NAC suppressed the induction of c-fos (a component of the AP-1 transcription factor) and the upregulation of fast (a proapoptotic molecule whose transcript is regulated downstream of AP-1). Our results suggest that AT1R signaling mediates light-induced apoptosis, by increasing the levels of ROS and proapoptotic molecules in the retina. Thus, AT1R blockade may represent a new therapeutic approach for preventing light-induced retinal neural tissue damage. (C) 2014 The Authors. Published by Elsevier Inc.
引用
收藏
页码:176 / 185
页数:10
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