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首页> 外文期刊>Investigative ophthalmology & visual science >Potential Role of Zinc Dyshomeostasis in Matrix Metalloproteinase-2 and -9 Activation and Photoreceptor Cell Death in Experimental Retinal Detachment
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Potential Role of Zinc Dyshomeostasis in Matrix Metalloproteinase-2 and -9 Activation and Photoreceptor Cell Death in Experimental Retinal Detachment

机译:锌Dyshomeostasis在基质金属蛋白酶-2和-9激活和光感受器细胞死亡中的潜在作用在实验视网膜脱离中

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Purpose : We investigated whether zinc dyshomeostasis, a known mechanism of cell death in acute brain injury, contributes to the activation of matrix metalloproteinases (MMPs) and photoreceptor cell death in experimental retinal detachment (RD). Methods : RD was induced in mice by subretinal injection of 1:1 mixture of balanced salt solution and 1% sodium hyaluronate. On days 1 and 3 post RD, eyeballs were sectioned and examined for cell death (TUNEL staining), the degree of hypoxic insult (Hypoxyprobe staining), free zinc levels (TFL-Zn staining), and MMP-2 and -9 activity (gelatin zymography). In addition, we examined whether modulating extracellular zinc concentration or MMP activation in subretinal fluid affected photoreceptor cell death in RD. These changes were further examined in primary retinal cell and photoreceptor-derived cell (661W) cultures. Results : Photoreceptor cell death peaked on day 3 post RD. Intracellular zinc markedly decreased on day 1 post RD, and subsequently accumulated on day 3. MMP-2 and -9 activity showed a concurrent increase in detached retinas. Detached retinas stained with Hypoxyprobe showed strongly positive cells, especially in the photoreceptor layer. Subretinal injection of a zinc-chelator (CaEDTA) or MMP inhibitor (GM6001, minocycline) at the time of RD significantly attenuated photoreceptor cell death in RD. Similar findings were confirmed in oxygen-glucose–deprived or zinc-exposed cell cultures. Conclusions : Upon RD, hypoxic retinal cells in deep layers underwent zinc dyshomeostasis, MMP activation, and ultimately death. These findings provide new insight into the possible mechanism of photoreceptor death in RD, and as such may prove useful in crafting protective measures for photoreceptor cells.
机译:目的:我们研究了锌脱果抑制,一种急性脑损伤中的细胞死亡机制,有助于在实验视网膜脱离(RD)中的基质金属蛋白酶(MMPS)和感光细胞死亡的激活。方法:通过对1:1混合物的均衡盐溶液和1%透明质酸钠混合物诱导小鼠中的RD。在第1天和第3天,眼球被切断并检查细胞死亡(TUNEL染色),缺氧损伤程度(低氧待染色),游离锌水平(TFL-ZN染色)和MMP-2和-9活性(明胶酶谱系)。此外,我们检查了调节细胞外锌浓度或MMP活化在次液体中是否影响了RD中的感光细胞死亡。在初级视网膜细胞和光感受器衍生的细胞(661W)培养物中进一步检查这些变化。结果:光感受器细胞死亡在第3天柱上达到峰值。在第1天后,细胞内锌显着降低,随后在第3天累积。MMP-2和-9活性显示分离的视网膜的同时增加。用低氧基百倍染色的分离的视网膜显示出强烈的阳性细胞,特别是在感光层中。在RD时,在RD时,在RD的时间内注射锌 - 螯合剂(CAEDTA)或MMP抑制剂(GM6001,MinoCILINE),显着减弱了RD的感光细胞死亡。在氧 - 葡萄糖剥夺或锌暴露细胞培养物中证实了类似的发现。结论:在Rd,深层缺氧视网膜细胞在锌DysoMeostasis,MMP活化,最终死亡。这些发现提供了对RD中感光体死亡可能机制的新洞察,因此可能在制备光感受器细胞的保护措施方面有助于制备保护措施。

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