呋噻嗪用于保护大鼠免受糖尿病诱导的视网膜损伤:氧化应激和JAK/STAT3轴的意义。

IF 5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY BioFactors Pub Date : 2023-09-22 DOI:10.1002/biof.2011
Nehal M. Elsherbiny, Reem Altemani, Waad Althagfi, Maha Albalawi, Zuhair M. Mohammedsaleh, Mohamed El-Sherbiny, Nada F. Abo El-Magd
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引用次数: 0

摘要

糖尿病(DM)的患病率在全球范围内惊人地增加。糖尿病视网膜病变(DR)是一种常见的糖尿病微血管并发症,是工作年龄人群致盲的主要原因。炎症在DR发病机制中起着至关重要的作用。JAK/STAT3轴是一个调节多种炎症事件的多效性级联反应。呋噻嗪(Nifu)是一种常用的口服抗生素,据报道具有JAK/STAT3抑制活性。本研究探讨了尼福对糖尿病视网膜损伤的潜在保护作用。Nifu对氧化应激、JAK/STAT3轴和下游炎症介质的影响也进行了研究。单次腹腔注射链脲佐菌素(50 mg/kg)。动物被分为四组:正常组、尼夫对照组、糖尿病组和糖尿病组 + 尼夫。尼福25岁口服 mg/kg/天,8 周。通过分光光度法、基因和蛋白质分析以及组织学研究,评估了Nifu对氧化应激、JAK/STAT3轴蛋白、炎症因子、紧密连接蛋白、组织学和超微结构改变的影响。糖尿病大鼠服用尼福可减轻视网膜损伤的组织病理学和体征。此外,Nifu减轻视网膜氧化应激,抑制JAK和STAT3磷酸化,增加STAT3信号抑制剂SOCS3的表达,抑制炎症转录因子NF-κB和炎症细胞因子TNF-α的表达。总之,目前的研究表明,尼福减轻了糖尿病大鼠的DR进展,表明了有益的视黄醇保护作用。这可归因于阻断视网膜组织中的JAK/STAT3轴,随后改善氧化应激和炎症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Nifuroxazide repurposing for protection from diabetes-induced retinal injury in rats: Implication of oxidative stress and JAK/STAT3 axis

The prevalence of diabetes mellitus (DM) is alarmingly increasing worldwide. Diabetic retinopathy (DR) is a prevailing DM microvascular complication, representing the major cause of blindness in working-age population. Inflammation is a crucial player in DR pathogenesis. JAK/STAT3 axis is a pleotropic cascade that modulates diverse inflammatory events. Nifuroxazide (Nifu) is a commonly used oral antibiotic with reported JAK/STAT3 inhibition activity. The present study investigated the potential protective effect of Nifu against diabetes-induced retinal injury. Effect of Nifu on oxidative stress, JAK/STAT3 axis and downstream inflammatory mediators has been also studied. Diabetes was induced in Sprague Dawley rats by single intraperitoneal injection of streptozotocin (50 mg/kg). Animals were assigned into four groups: normal, Nifu control, DM, and DM + Nifu. Nifu was orally administrated at 25 mg/kg/day for 8 weeks. The effects of Nifu on oxidative stress, JAK/STAT3 axis proteins, inflammatory factors, tight junction proteins, histological, and ultrastructural alterations were evaluated using spectrophotometry, gene and protein analyses, and histological studies. Nifu administration to diabetic rats attenuated histopathological and signs of retinal injury. Additionally, Nifu attenuated retinal oxidative stress, inhibited JAK and STAT3 phosphorylation, augmented the expression of STAT3 signaling inhibitor SOCS3, dampened the expression of transcription factor of inflammation NF-κB, and inflammatory cytokine TNF-α. Collectively, the current study indicated that Nifu alleviated DR progression in diabetic rats, suggesting beneficial retino-protective effect. This can be attributed to blocking JAK/STAT3 axis in retinal tissues with subsequent amelioration of oxidative stress and inflammation.

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来源期刊
BioFactors
BioFactors 生物-内分泌学与代谢
CiteScore
11.50
自引率
3.30%
发文量
96
审稿时长
6-12 weeks
期刊介绍: BioFactors, a journal of the International Union of Biochemistry and Molecular Biology, is devoted to the rapid publication of highly significant original research articles and reviews in experimental biology in health and disease. The word “biofactors” refers to the many compounds that regulate biological functions. Biological factors comprise many molecules produced or modified by living organisms, and present in many essential systems like the blood, the nervous or immunological systems. A non-exhaustive list of biological factors includes neurotransmitters, cytokines, chemokines, hormones, coagulation factors, transcription factors, signaling molecules, receptor ligands and many more. In the group of biofactors we can accommodate several classical molecules not synthetized in the body such as vitamins, micronutrients or essential trace elements. In keeping with this unified view of biochemistry, BioFactors publishes research dealing with the identification of new substances and the elucidation of their functions at the biophysical, biochemical, cellular and human level as well as studies revealing novel functions of already known biofactors. The journal encourages the submission of studies that use biochemistry, biophysics, cell and molecular biology and/or cell signaling approaches.
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