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青光眼的昼夜节律功能障碍:一种假说。

Circadian rhythm dysfunction in glaucoma: A hypothesis.

作者信息

Jean-Louis Girardin, Zizi Ferdinand, Lazzaro Douglas R, Wolintz Arthur H

机构信息

Department of Ophthalmology, SUNY Downstate Medical Center, New York, USA.

出版信息

J Circadian Rhythms. 2008 Jan 10;6:1. doi: 10.1186/1740-3391-6-1.

Abstract

The absence of circadian zeitgebers in the social environment causes circadian misalignment, which is often associated with sleep disturbances. Circadian misalignment, defined as a mismatch between the sleep-wake cycle and the timing of the circadian system, can occur either because of inadequate exposure to the light-dark cycle, the most important synchronizer of the circadian system, or reduction in light transmission resulting from ophthalmic diseases (e.g., senile miosis, cataract, diabetic retinopathy, macular degeneration, retinitis pigmentosa, and glaucoma). We propose that glaucoma may be the primary ocular disease that directly compromises photic input to the circadian time-keeping system because of inherent ganglion cell death. Glaucomatous damage to the ganglion cell layer might be particularly harmful to melanopsin. According to histologic and circadian data, a subset of intrinsically photoresponsive retinal ganglion cells, expressing melanopsin and cryptochromes, entrain the endogenous circadian system via transduction of photic input to the thalamus, projecting either to the suprachiasmatic nucleus or the lateral geniculate nucleus. Glaucoma provides a unique opportunity to explore whether in fact light transmission to the circadian system is compromised as a result of ganglion cell loss.

摘要

社会环境中昼夜节律授时因子的缺失会导致昼夜节律失调,这通常与睡眠障碍有关。昼夜节律失调被定义为睡眠-清醒周期与昼夜节律系统的时间不匹配,其发生可能是由于对昼夜节律系统最重要的同步器——明暗周期的暴露不足,或者是由于眼科疾病(如老年性瞳孔缩小、白内障、糖尿病视网膜病变、黄斑变性、视网膜色素变性和青光眼)导致的光传输减少。我们提出,青光眼可能是由于固有神经节细胞死亡而直接损害昼夜节律计时系统光输入的主要眼部疾病。青光眼对视神经节细胞层的损害可能对黑视蛋白特别有害。根据组织学和昼夜节律数据,一部分表达黑视蛋白和隐花色素的内在光反应性视网膜神经节细胞,通过将光输入传导至丘脑,投射到视交叉上核或外侧膝状体核,从而调节内源性昼夜节律系统。青光眼提供了一个独特的机会来探索,神经节细胞丢失是否真的会导致进入昼夜节律系统的光传输受损。

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