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首页> 外文期刊>Medical science monitor : >Thioredoxin-Interacting Protein (TXNIP) Suppresses Expression of Glutamine Synthetase by Inducing Oxidative Stress in Retinal Muller Glia Under Diabetic Conditions
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Thioredoxin-Interacting Protein (TXNIP) Suppresses Expression of Glutamine Synthetase by Inducing Oxidative Stress in Retinal Muller Glia Under Diabetic Conditions

机译:硫氧还蛋白相互作用蛋白(TXNIP)通过诱导糖尿病性视网膜穆勒胶质细胞的氧化应激抑制谷氨酰胺合成酶的表达。

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BACKGROUND Diabetic retinopathy (DR) is a progressive neurodegenerative disease with early-stage symptoms such as dysfunction of Muller cells, which leads to ganglion cell death. Its pathogenesis is probably associated with oxidative stress and a recently discovered protein, thioredoxin-interacting protein (TXNIP).? MATERIAL AND METHODS To explore the role of TXNIP in DR, we cultured Muller cells under diabetic conditions, and then used immunohistochemistry, Western blot, and RT-PCR to detect the expression level of TXNIP under diabetic conditions. We demonstrated the expression level of glutamine synthetase (GS) when TXNIP was inhibited. To explore the potential pathway of TXNIP-induced cell damage in DR, we confirmed the role of IL-1β under diabetic conditions.? RESULTS Diabetes induces TXNIP expressions at mRNA levels, but shows the opposite effect on GS. IL-1β plays an important role in this pathway. Azaserine effectively increased the expression of GS via attenuating the expression of TXNIP.? CONCLUSIONS This study demonstrates the role of TXNIP and its mechanism in DR, provides a possible treatment for DR, and lays a new theoretical foundation for the clinical treatment of DR and other diabetic microvascular changes.
机译:背景技术糖尿病性视网膜病(DR)是一种进行性神经退行性疾病,具有早期症状,例如Muller细胞功能障碍,导致神经节细胞死亡。其发病机制可能与氧化应激和最近发现的蛋白质,硫氧还蛋白相互作用蛋白(TXNIP)有关。材料与方法为了探讨TXNIP在DR中的作用,我们在糖尿病条件下培养Muller细胞,然后使用免疫组化,Western印迹和RT-PCR检测糖尿病条件下TXNIP的表达水平。我们证明了TXNIP被抑制时谷氨酰胺合成酶(GS)的表达水平。为了探讨TXNIP诱导的DR细胞损伤的潜在途径,我们证实了IL-1β在糖尿病条件下的作用。结果糖尿病在mRNA水平上诱导TXNIP表达,但对GS显示相反的作用。 IL-1β在该途径中起重要作用。 Azaserine通过减弱TXNIP的表达有效地增加了GS的表达。结论本研究证明了TXNIP及其在DR中的作用,为DR提供了可能的治疗方法,并为DR和其他糖尿病微血管改变的临床治疗奠定了新的理论基础。

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