miR-151a-5p预测糖尿病视网膜病变的严重程度,并通过DKK3失活MAPK信号来保护视网膜细胞损伤。

IF 3 2区 医学 Q1 OPHTHALMOLOGY Experimental eye research Pub Date : 2024-12-17 DOI:10.1016/j.exer.2024.110212
Yongzhen Yu, Mengyi Zhang, Wenjie Zhou, Yangyang Yu, Liulian Jian, Yuping Zou, Long Pang, Xiulan Zou
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引用次数: 0

摘要

糖尿病(DM)总是伴随着各种并发症,其中糖尿病视网膜病变是威胁患者视功能的严重微血管并发症。本研究评估了 miR-151a-5p 的重要性及其对糖尿病视网膜病变进展的影响,旨在探索一种用于疾病筛查和监测的新型生物标记物。研究招募了 137 名糖尿病患者和 103 名患有 DR 的糖尿病患者。血清 miR-151a-5p 与 PCR 进行了比较,并从诊断和严重程度预测的角度评估了其临床意义。建立了高血糖处理的人类视网膜细胞模型,从细胞生长、炎症、氧化应激和内质网应激等方面评估了 miR-151a-5p 对高血糖诱导的细胞损伤的影响。在机制方面,根据功能富集预测了 miR-151a-5p 的下游靶标,并估计了 DKK3 和 MAPK 信号转导的参与。在诊断为DR的DM患者中,miR-151a-5p的增加被认为是DR的风险因素,并且与疾病严重程度呈正相关,预示着DR的严重发展。沉默 miR-151a-5p 可减轻高血糖诱导的人视网膜细胞增殖减少、炎症活化、氧化应激和内质网应激。研究发现,miR-151a-5p 对 DKK3 有负向调节作用,敲除 DKK3 可以逆转 miR-151a-5p 的保护作用。miR-151a-5p可能通过MAPK信号转导调节炎症、氧化应激和内质网应激,从而调节DR的进展。
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miR-151a-5p predicts severity of diabetic retinopathy and protects from retinal cell injury by inactivating MAPK signaling via DKK3.

Diabetes mellitus (DM) is always accompanied by various complications, where diabetic retinopathy was a serious microvascular complications threatening the visual function of patients. This study evaluated the significance of miR-151a-5p and its effect on DR progression aiming to explore a novel biomarker for disease screening and monitoring. Study enrolled 137 patients with DM and 103 diabetes patients with DR. Serum miR-151a-5p was compared with PCR, and its clinical significance was evaluated from the perspectives of diagnosis and severity prediction. High-glucose-treated human retinal cell model was established, the effect of miR-151a-5p on high-glucose-induced cell injury was assessed based on cell growth, inflammation, oxidative stress, and endoplasmic reticulum stress. In mechanism, the downstream targets of miR-151a-5p were predicted, based on the function enrichment, the involvement of DKK3 and the MAPK signaling was estimated. Increasing miR-151a-5p was identified as a risk factor for DR in DM patients diagnosing DR patients and was positively correlated with disease severity predicting severe development of DR. Silencing miR-151a-5p alleviated high-glucose-induced reducing proliferation, activated inflammation, oxidative stress, and endoplasmic reticulum stress in human retinal cells. Negative regulation of DKK3 by miR-151a-5p was observed, and the knockdown of DKK3 could reversed the protective effect of miR-151a-5p. High-glucose activate the MAPK signaling, which was suppressed by the miR-151a-5p/DKK3 axis, and MAPK signaling was demonstrated to mediate the functional role of the miR-151a-5p/DKK3 axis. miR-151a-5p can be considered as a biomarker for the onset and progression of DR. miR-151a-5p potentially modulates the progression of DR through regulating inflammation, oxidative stress, and endoplasmic reticulum stress via the MAPK signaling.

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来源期刊
Experimental eye research
Experimental eye research 医学-眼科学
CiteScore
6.80
自引率
5.90%
发文量
323
审稿时长
66 days
期刊介绍: The primary goal of Experimental Eye Research is to publish original research papers on all aspects of experimental biology of the eye and ocular tissues that seek to define the mechanisms of normal function and/or disease. Studies of ocular tissues that encompass the disciplines of cell biology, developmental biology, genetics, molecular biology, physiology, biochemistry, biophysics, immunology or microbiology are most welcomed. Manuscripts that are purely clinical or in a surgical area of ophthalmology are not appropriate for submission to Experimental Eye Research and if received will be returned without review.
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