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米非司酮,一种糖皮质激素受体阻断剂,可促进光感受器细胞死亡。

Mifepristone, a blocker of glucocorticoid receptors, promotes photoreceptor death.

机构信息

Medicina Celular y Molecular, Facultad de Ciencias Biomédicas, Universidad Austral, Pilar, Argentina.

出版信息

Invest Ophthalmol Vis Sci. 2013 Jan 14;54(1):313-22. doi: 10.1167/iovs.12-10014.

Abstract

PURPOSE

Glucocorticoids are best known by their protective effect on retinal photoreceptor damage. However, they could also be involved in photoreceptor homeostasis under basal, nonstressful conditions. Therefore, we aimed to study glucocorticoid-induced changes of survival-related molecules in male mice retinas under standard illumination conditions (12 hours light, ≤ 60 lux/12 h dark).

METHODS

Male Balb-c mice were injected with dexamethasone (DEX), a selective glucocorticoid receptor α (GRα) agonist, its antagonist mifepristone (MFP), or both drugs (D+M) at noon. A group of mice was subjected to surgical adrenalectomy (AdrX). Retinas were studied by histology, immunohistochemistry, TUNEL procedure, and Western blotting at different periods after pharmacological or surgical intervention (6 hours, 48 hours, or 7 days).

RESULTS

The antiapoptotic molecule Bcl-X(L) significantly increased 6 hours after DEX injection. By contrast, this molecule could no longer be found after MFP injection. At the same time, high levels of cleaved caspase-3 (CC-3) and Bax appeared in retinal extracts, and TUNEL(+) nuclei selectively showed in the outer nuclear layer (ONL). After MFP, retinal extracts also contained phosphorylated histone H2AX (p-H2AX), a marker of DNA breakage and repair. Loss of ONL nuclear rows and decrease of rhodopsin levels were evident 7 days after MFP administration. These changes were minimized when DEX was given together with MFP (D+M). In the absence of MFP, DEX increased Bcl-X(L) in every retinal layer, with a marked intensification in photoreceptor inner segments. Numerous TUNEL(+) nuclei rapidly appeared in the ONL after AdrX.

CONCLUSIONS

A single dose of MFP induced selective photoreceptor damage in the absence of other environmental stressors. Because damage was prevented by DEX, and was reproduced by AdrX, our findings suggest that glucocorticoids play a critical role in photoreceptor survival.

摘要

目的

糖皮质激素以其对视网膜光感受器损伤的保护作用而闻名。然而,它们也可能参与基础、非应激条件下的光感受器稳态。因此,我们旨在研究在标准光照条件(12 小时光照,≤60 lux/12 小时黑暗)下,糖皮质激素诱导雄性小鼠视网膜中与生存相关的分子的变化。

方法

雄性 Balb-c 小鼠在中午注射地塞米松(DEX),一种选择性糖皮质激素受体 α(GRα)激动剂,其拮抗剂米非司酮(MFP),或两种药物(D+M)。一组小鼠接受肾上腺切除术(AdrX)。在药物或手术干预后不同时间(6 小时、48 小时或 7 天)通过组织学、免疫组织化学、TUNEL 程序和 Western blot 研究视网膜。

结果

DEX 注射后 6 小时,抗凋亡分子 Bcl-X(L)显著增加。相比之下,MFP 注射后不再发现这种分子。同时,视网膜提取物中出现高水平的裂解半胱天冬酶-3(CC-3)和 Bax,TUNEL(+)核选择性出现在外核层(ONL)中。MFP 后,视网膜提取物还含有磷酸化组蛋白 H2AX(p-H2AX),这是 DNA 断裂和修复的标志物。MFP 给药 7 天后,ONL 核行丢失和视紫红质水平下降明显。当 DEX 与 MFP 一起给予时(D+M),这些变化最小化。在没有 MFP 的情况下,DEX 增加了每个视网膜层中的 Bcl-X(L),在内节中表现出明显的增强。AdrX 后,ONL 中迅速出现大量 TUNEL(+)核。

结论

单次 MFP 剂量在没有其他环境应激源的情况下诱导选择性光感受器损伤。由于 DEX 可预防损伤,AdrX 可重现损伤,我们的研究结果表明,糖皮质激素在光感受器存活中起关键作用。

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