广谱靶向代谢组学揭示的光胁迫预处理视网膜代谢事件。

Juan Manuel Chao de la Barca, Nuan-Ting Huang, Haihan Jiao, Lydie Tessier, Cédric Gadras, Gilles Simard, Riccardo Natoli, Guillaume Tcherkez, Pascal Reynier, Krisztina Valter
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引用次数: 1

摘要

光是视觉的主要刺激,但也可能对视网膜造成损伤。将视网膜预先暴露在亚致死量的光下(或预处理)可以提高视网膜细胞在急性破坏性光应激下存活的机会。目的:本研究旨在探讨轻度光应激后视网膜代谢组的变化及其可能参与预处理的机制。方法:取轻度光应激(1000 lux x) 12 h大鼠12只和对照组12只,分别于光应激后1天和7天采集视网膜。其中一个视网膜使用Biocrates p180试剂盒进行靶向代谢组学分析,而另一个视网膜用于组织学和免疫组织化学分析。结果:免疫组化证实,本实验发生轻度LS,伴视网膜免疫反应,光感受器损失最小。与对照组相比,LS诱导磷脂酰胆碱浓度升高。一些氨基酸和生物胺的浓度,特别是与一氧化氮途径有关的氨基酸(如不对称二甲基精氨酸(ADMA)、精氨酸和瓜氨酸)在LS后1天也有所增加。LS后7 d,两种鞘磷脂和苯乙胺的浓度均升高。我们进一步发现,在对照组中,男性和女性的视网膜代谢组不同:男性视网膜中酪氨酸、乙酰鸟氨酸、磷脂酰胆碱和(酰基)肉毒碱的浓度增加。结论:除了视网膜性代谢二态性外,本研究表明预处理主要与脂质代谢的重组和氨基酸组成的变化有关,可能反映了精氨酸依赖性NO信号的参与。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Retinal metabolic events in preconditioning light stress as revealed by wide-spectrum targeted metabolomics.

Retinal metabolic events in preconditioning light stress as revealed by wide-spectrum targeted metabolomics.

Retinal metabolic events in preconditioning light stress as revealed by wide-spectrum targeted metabolomics.

Retinal metabolic events in preconditioning light stress as revealed by wide-spectrum targeted metabolomics.

Introduction: Light is the primary stimulus for vision, but may also cause damage to the retina. Pre-exposing the retina to sub-lethal amount of light (or preconditioning) improves chances for retinal cells to survive acute damaging light stress.

Objectives: This study aims at exploring the changes in retinal metabolome after mild light stress and identifying mechanisms that may be involved in preconditioning.

Methods: Retinas from 12 rats exposed to mild light stress (1000 lux × for 12 h) and 12 controls were collected one and seven days after light stress (LS). One retina was used for targeted metabolomics analysis using the Biocrates p180 kit while the fellow retina was used for histological and immunohistochemistry analysis.

Results: Immunohistochemistry confirmed that in this experiment, a mild LS with retinal immune response and minimal photoreceptor loss occurred. Compared to controls, LS induced an increased concentration in phosphatidylcholines. The concentration in some amino acids and biogenic amines, particularly those related to the nitric oxide pathway (like asymmetric dimethylarginine (ADMA), arginine and citrulline) also increased 1 day after LS. 7 days after LS, the concentration in two sphingomyelins and phenylethylamine was found to be higher. We further found that in controls, retina metabolome was different between males and females: male retinas had an increased concentration in tyrosine, acetyl-ornithine, phosphatidylcholines and (acyl)-carnitines.

Conclusions: Besides retinal sexual metabolic dimorphism, this study shows that preconditioning is mostly associated with re-organisation of lipid metabolism and changes in amino acid composition, likely reflecting the involvement of arginine-dependent NO signalling.

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