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房水蛋白质浓度昼夜节律中的生理因素。

Physiological factors in the circadian rhythm of protein concentration in aqueous humor.

作者信息

Liu J H, Lindsey J D, Weinreb R N

机构信息

Department of Ophthalmology, University of California, San Diego, La Jolla 92093-0946, USA.

出版信息

Invest Ophthalmol Vis Sci. 1998 Mar;39(3):553-8.

PMID:9501866
Abstract

PURPOSE

The authors addressed three questions concerning the circadian rhythm of aqueous humor protein concentration in rabbits. First, is there an endogenous oscillator for this circadian rhythm? Second, does a circadian rhythm occur for individual aqueous humor protein components? Third, what is the role of ocular sympathetic nerves, which are more active in the dark phase, in this circadian rhythm?

METHODS

Adult New Zealand albino rabbits were entrained to a daily 12-hour light/12-hour dark cycle. Under a constant dark environment for 24 hours, rabbits were killed at 4-hour intervals, beginning at 2 hours before the onset of the subjective light phase. Eight rabbits were used for each of the six time points. Aqueous humor and vitreous humor were collected, and their protein concentrations were determined. Major aqueous humor protein components were resolved by polyacrylamide gel electrophoresis (PAGE), stained with silver reagent, and analyzed using densitometry. Another group of eight light-dark-entrained rabbits underwent unilateral transection of the cervical sympathetic trunk. Three weeks after the operation; the circadian elevation of intraocular pressure (IOP) at 2 hours into the dark phase was determined for both eyes. Rabbits were later killed at this time point, and total protein concentrations in aqueous humor and vitreous humor were determined in both eyes. Major aqueous humor protein components in both eyes were resolved by PAGE and were compared.

RESULTS

In light-dark-entrained rabbits, a circadian rhythm of protein concentration appeared in the aqueous humor under a constant dark environment. Total protein concentration in aqueous humor increased sharply in the early subjective light phase, remained relatively high during the remainder of the subjective light phase, and decreased in the subjective dark phase. Analyses of albumin and other abundant proteins in the aqueous humor showed that all of them varied similarly in a circadian pattern. In contrast, total protein concentration in the vitreous humor remained unchanged. In rabbits with unilaterally decentralized ocular sympathetic nerves, total protein concentrations in the aqueous humor and the vitreous humor in the early dark phase showed no difference between the two eyes. In addition, there was no difference in individual aqueous humor protein concentration between the two eyes. However, the nocturnal IOP elevation in the decentralized eye was less than that in the contralateral, intact eye.

CONCLUSIONS

The circadian rhythm of aqueous humor protein concentration in rabbits can continue without an external signal of dark-light change, indicating the existence of an endogenous oscillator. A similar circadian rhythm occurs for various major aqueous humor protein components. The nocturnal increase in ocular sympathetic activities plays a limited role in the circadian rhythm of aqueous humor protein concentration.

摘要

目的

作者探讨了有关兔房水蛋白浓度昼夜节律的三个问题。第一,这种昼夜节律是否存在内源性振荡器?第二,单个房水蛋白成分是否存在昼夜节律?第三,在黑暗阶段更活跃的眼交感神经在这种昼夜节律中起什么作用?

方法

成年新西兰白化兔被置于每日12小时光照/12小时黑暗周期中。在持续黑暗环境下24小时,从主观光照期开始前2小时起,每隔4小时处死兔子。六个时间点每个时间点使用八只兔子。收集房水和玻璃体,测定其蛋白浓度。通过聚丙烯酰胺凝胶电泳(PAGE)分离主要房水蛋白成分,用银试剂染色,并用密度测定法进行分析。另一组八只经明暗周期驯化的兔子接受单侧颈交感干横断术。术后三周;测定双眼在黑暗期2小时时眼内压(IOP)的昼夜升高情况。随后在这个时间点处死兔子,测定双眼房水和玻璃体中的总蛋白浓度。通过PAGE分离双眼的主要房水蛋白成分并进行比较。

结果

在经明暗周期驯化的兔子中,在持续黑暗环境下房水蛋白浓度出现昼夜节律。房水中总蛋白浓度在主观光照期早期急剧增加,在主观光照期其余时间保持相对较高水平,并在主观黑暗期降低。对房水中白蛋白和其他丰富蛋白质的分析表明,它们均以类似的昼夜模式变化。相比之下,玻璃体中的总蛋白浓度保持不变。在单侧眼交感神经去传入的兔子中,黑暗早期房水和玻璃体中的总蛋白浓度在双眼之间没有差异。此外,双眼之间单个房水蛋白浓度也没有差异。然而,去传入眼的夜间IOP升高低于对侧完整眼。

结论

兔房水蛋白浓度的昼夜节律在没有明暗变化外部信号的情况下仍可继续,表明存在内源性振荡器。各种主要房水蛋白成分出现类似的昼夜节律。眼交感神经活动的夜间增加在房水蛋白浓度的昼夜节律中起有限作用。

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