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光照对鸡视网膜中视黄酯积累和消耗的影响。

Effect of light exposure on the accumulation and depletion of retinyl ester in the chicken retina.

作者信息

Villazana-Espinoza Elia T, Hatch Andrea L, Tsin Andrew T C

机构信息

Department of Biology, The University of Texas at San Antonio, 6900 N Loop 1604 W, 78249, USA.

出版信息

Exp Eye Res. 2006 Oct;83(4):871-6. doi: 10.1016/j.exer.2006.04.011. Epub 2006 Jun 15.

Abstract

A previous study has shown that in the cone-rich chicken retina, 11-cis retinyl ester increases with light exposure and decreases in subsequent dark adaptation. The purpose of this research is to study how light exposure (intensity and duration) determine the rate of accumulation and utilization as well as the size of this 11-cis retinyl ester pool in the chicken retina. Chickens were dark-adapted overnight before exposure to different light intensities and durations. Animals were sampled at regular time intervals. 11-cis retinal and 11-cis retinyl ester were extracted from the retina and analyzed by HPLC. An increase in light intensity from 1,000 and 2,000 Lux (for a 20 min exposure) increased the amount of 11-cis retinyl ester from 0.38 to 0.75 nmol/mg. An increase in the duration of light exposure from 10 to 20 min (at 2,000 Lux) also increased the amount of 11-cis retinyl ester in the chicken retina (from 0.37 to 0.75 nmol/mg). This 11-cis retinyl ester pool in the chicken retina was rapidly reduced to baseline level ( approximately 0.20 nmol/mg) upon dark adaptation. The rate of accumulation of 11-cis retinyl ester was dependent on light intensity and duration of exposure and the maximum rate was approximately 0.03 nmol/mg/min. In comparison, dark adaptation was associated with a significantly higher rate of 11-cis retinyl ester depletion (approximately 0.05), indicating that light exposure and dark adaptation were associated with different biochemical steps of retinoid storage and utilization. Results from this study are the first to show that the size of the 11-cis retinyl ester pool, as well as the rate of its accumulation and depletion in the cone-rich chicken retina, are determined by the intensity and duration of light exposure. These data support the suggestion that a light-driven cone cycle exists in the chicken retina.

摘要

先前的一项研究表明,在富含视锥细胞的鸡视网膜中,11-顺式视黄酯会随着光照而增加,并在随后的暗适应过程中减少。本研究的目的是探讨光照(强度和持续时间)如何决定鸡视网膜中11-顺式视黄酯池的积累和利用速率以及其大小。鸡在暴露于不同光照强度和持续时间之前进行了过夜暗适应。在固定的时间间隔对动物进行采样。从视网膜中提取11-顺式视黄醛和11-顺式视黄酯,并通过高效液相色谱法进行分析。光照强度从1000勒克斯增加到2000勒克斯(暴露20分钟),使11-顺式视黄酯的量从0.38纳摩尔/毫克增加到0.75纳摩尔/毫克。光照持续时间从10分钟增加到20分钟(在2000勒克斯下)也增加了鸡视网膜中11-顺式视黄酯的量(从0.37纳摩尔/毫克增加到0.75纳摩尔/毫克)。鸡视网膜中的这个11-顺式视黄酯池在暗适应后迅速降至基线水平(约0.20纳摩尔/毫克)。11-顺式视黄酯的积累速率取决于光照强度和暴露持续时间,最大速率约为0.03纳摩尔/毫克/分钟。相比之下,暗适应与11-顺式视黄酯消耗的显著更高速率(约0.05)相关,表明光照和暗适应与类视黄醇储存和利用的不同生化步骤相关。本研究结果首次表明,富含视锥细胞的鸡视网膜中11-顺式视黄酯池的大小及其积累和消耗速率由光照强度和持续时间决定。这些数据支持了鸡视网膜中存在光驱动视锥循环的观点。

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