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光和生物钟在眼内压节律性波动中的作用:VPAC2 受体和 PACAP 缺乏小鼠的研究。

Role of light and the circadian clock in the rhythmic oscillation of intraocular pressure: Studies in VPAC2 receptor and PACAP deficient mice.

机构信息

Department of Clinical Biochemistry, Bispebjerg and Frederiksberg Hospital, Faculty of Health Sciences, University of Copenhagen, Bispebjerg, Bakke 23, DK-2400, København NV, Denmark.

出版信息

Exp Eye Res. 2018 Apr;169:134-140. doi: 10.1016/j.exer.2018.02.004. Epub 2018 Feb 8.

Abstract

The intraocular pressure of mice displays a daily rhythmicity being highest during the dark period. The present study was performed to elucidate the role of the circadian clock and light in the diurnal and the circadian variations in intraocular pressure in mice, by using animals with disrupted clock function (VPAC2 receptor knockout mice) or impaired light information to the clock (PACAP knockout mice). In wildtype mice, intraocular pressure measured under light/dark conditions showed a statistically significant 24 h sinusoidal rhythm with nadir during the light phase and peak during the dark phase. After transfer of the wildtype mice into constant darkness, the intraocular pressure increased, but the rhythmic changes in intraocular pressure continued with a pattern identical to that obtained during the light/dark cycle. The intraocular pressure in VPAC2 receptor deficient mice during light/dark conditions also showed a sinusoidal pattern with significant changes as a function of a 24 h cycle. However, transfer of the VPAC2 receptor knockout mice into constant darkness completely abolished the rhythmic changes in intraocular pressure. The intraocular pressure in PACAP deficient mice oscillated significantly during both 24 h light and darkness and during constant darkness. During LD conditions, the amplitude of PACAP deficient was significantly lower compared to wildtype mice, resulting in higher daytime and lower nighttime values. In conclusion, by studying the VPAC2 receptor knockout mouse which lacks circadian control and the PACAP knockout mouse which displays impaired light signaling, we provided evidence that the daily intraocular pressure rhythms are primarily generated by the circadian master clock and to a lesser extent by environmental light and darkness.

摘要

小鼠的眼压呈现出昼夜节律性,在夜间最高。本研究旨在通过使用时钟功能紊乱(VPAC2 受体敲除小鼠)或时钟光信息受损(PACAP 敲除小鼠)的动物,阐明昼夜节律时钟和光照在小鼠眼压昼夜和昼夜变化中的作用。在野生型小鼠中,在光照/黑暗条件下测量的眼压显示出具有统计学意义的 24 小时正弦节律,最低点出现在光照期,最高点出现在暗期。将野生型小鼠转移到持续黑暗中后,眼压升高,但眼压的节律性变化仍继续,模式与光照/黑暗周期相同。在光照/黑暗条件下,VPAC2 受体缺陷小鼠的眼压也呈现出正弦模式,并且随着 24 小时周期的变化而发生显著变化。然而,将 VPAC2 受体敲除小鼠转移到持续黑暗中完全消除了眼压的节律性变化。PACAP 缺陷小鼠的眼压在 24 小时光照和黑暗以及持续黑暗中均显著波动。在 LD 条件下,PACAP 缺陷小鼠的振幅明显低于野生型小鼠,导致白天眼压升高,夜间眼压降低。总之,通过研究缺乏昼夜节律控制的 VPAC2 受体敲除小鼠和显示光照信号受损的 PACAP 敲除小鼠,我们提供了证据表明,每日眼压节律主要由昼夜节律主钟产生,其次是环境光照和黑暗。

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