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氧化还原蛋白硫氧还蛋白1和硫氧还蛋白2在实验性青光眼中支持视网膜神经节细胞存活。

Redox proteins thioredoxin 1 and thioredoxin 2 support retinal ganglion cell survival in experimental glaucoma.

作者信息

Munemasa Y, Ahn J H, Kwong J M K, Caprioli J, Piri N

机构信息

Jules Stein Eye Institute, University of California Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Gene Ther. 2009 Jan;16(1):17-25. doi: 10.1038/gt.2008.126. Epub 2008 Aug 14.

Abstract

We investigated the neuroprotective effect of thioredoxin 1 (Trx1) and thioredoxin 2 (Trx2) which play critical roles in the regulation of oxidative stress on retinal ganglion cells (RGCs) in a rat glaucoma model. Expression of Trx1 and Trx2 and Trx-interacting protein (Txnip) was observed in the RGC layer (GCL), nerve fiber layer and inner nuclear layer. Txnip-, Trx1- and Trx2-expressing cells in the GCL were primarily colocalized with RGCs. The increased Txnip protein level was observed 2 and 5 weeks after glaucoma induction. Trx1 level decreased 2 weeks after glaucoma induction and more prominently after 5 weeks. No change in Trx2 levels was detected. The effects of Trx1 and Trx2 overexpression on RGC survival were evaluated 5 weeks after glaucoma induction. In nontransfected and EGFP-transfected (used as a negative control) retinas, RGC loss was approximately 27% compared with control. The loss of RGCs in Trx1- and Trx2- transfected retinas was approximately 15 and 17%, respectively. Thus, Trx1 and Trx2 preserved 45 and 37% of cells, respectively that were destined to die in glaucomatous retinas. The results of this study provide evidence for the involvement of oxidative stress in RGC degeneration in experimental glaucoma and point to potential strategies to reduce its impact.

摘要

我们研究了硫氧还蛋白1(Trx1)和硫氧还蛋白2(Trx2)在大鼠青光眼模型中对视网膜神经节细胞(RGCs)氧化应激调节起关键作用时的神经保护作用。在RGC层(神经节细胞层)、神经纤维层和内核层观察到Trx1、Trx2及Trx相互作用蛋白(Txnip)的表达。神经节细胞层中表达Txnip、Trx1和Trx2的细胞主要与RGCs共定位。青光眼诱导后2周和5周观察到Txnip蛋白水平升高。青光眼诱导后2周Trx1水平下降,5周后更明显。未检测到Trx2水平的变化。在青光眼诱导5周后评估了Trx1和Trx2过表达对RGC存活的影响。在未转染和EGFP转染(用作阴性对照)的视网膜中,与对照相比,RGC损失约27%。在Trx1和Trx2转染的视网膜中,RGC损失分别约为15%和17%。因此,Trx1和Trx2分别保留了45%和37%在青光眼视网膜中注定要死亡的细胞。本研究结果为氧化应激参与实验性青光眼RGC退变提供了证据,并指出了减轻其影响的潜在策略。

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