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水通道蛋白 11 通过水流出减轻糖尿病视网膜病变中的视网膜 Müller 细胞内水肿。

Aquaporin 11 alleviates retinal Müller intracellular edema through water efflux in diabetic retinopathy.

机构信息

Department of Ophthalmology, Shanghai General Hospital (Shanghai First People's Hospital), Shanghai Jiao Tong University School of Medicine, Shanghai, China; National Clinical Research Center for Eye Diseases, Shanghai Key Laboratory of Ocular Fundus Diseases, Shanghai Engineering Center for Visual Science and Photomedicine, Shanghai Engineering Center for Precise Diagnosis and Treatment of Eye Diseases, Shanghai, China; Department of Regenerative Medicine, and Department of Pharmacology, Tongji Eye Institute, Tongji University School of Medicine, Shanghai, China.

Department of Ophthalmology, Shanghai General Hospital (Shanghai First People's Hospital), Shanghai Jiao Tong University School of Medicine, Shanghai, China; National Clinical Research Center for Eye Diseases, Shanghai Key Laboratory of Ocular Fundus Diseases, Shanghai Engineering Center for Visual Science and Photomedicine, Shanghai Engineering Center for Precise Diagnosis and Treatment of Eye Diseases, Shanghai, China.

出版信息

Pharmacol Res. 2023 Jan;187:106559. doi: 10.1016/j.phrs.2022.106559. Epub 2022 Nov 17.

Abstract

Retinal Müller glial dysfunction and intracellular edema are important mechanisms leading to diabetic macular edema (DME). Aquaporin 11 (AQP11) is primarily expressed in Müller glia with unclear functions. This study aims to explore the role of AQP11 in the pathogenesis of intracellular edema of Müller glia in diabetic retinopathy (DR). Here, we found that AQP11 expression, primarily located at the endfeet of Müller glia, was down-regulated with diabetes progression, accompanied by intracellular edema, which was alleviated by intravitreal injection of lentivirus-mediated AQP11 overexpression. Similarly, intracellular edema of hypoxia-treated rat Müller cell line (rMC-1) was aggravated by AQP11 inhibition, while attenuated by AQP11 overexpression, accompanied by enhanced function in glutamate metabolism and reduced cell death. The down-regulation of AQP11 was also verified in the Müller glia from the epiretinal membranes (ERMs) of proliferative DR (PDR) patients. Mechanistically, down-regulation of AQP11 in DR was mediated by the HIF-1α-dependent and independent miRNA-AQP11 axis. Overall, we deciphered the AQP11 down-regulation, mediated by miRNA-AQP11 axis, resulted in Müller drainage dysfunction and subsequent intracellular edema in DR, which was partially reversed by AQP11 overexpression. Our findings propose a novel mechanism for the pathogenesis of DME, thus targeting AQP11 regulation provides a new therapeutic strategy for DME.

摘要

视网膜 Müller 胶质细胞功能障碍和细胞内水肿是导致糖尿病性黄斑水肿 (DME) 的重要机制。水通道蛋白 11 (AQP11) 主要在 Müller 胶质细胞中表达,但其功能尚不清楚。本研究旨在探讨 AQP11 在糖尿病性视网膜病变 (DR) 中 Müller 胶质细胞内水肿发病机制中的作用。研究发现,AQP11 的表达(主要位于 Müller 胶质细胞的终足)随着糖尿病的进展而下调,伴随细胞内水肿,而通过玻璃体腔注射慢病毒介导的 AQP11 过表达可减轻该水肿。同样,缺氧处理的大鼠 Müller 细胞系 (rMC-1) 的细胞内水肿在 AQP11 抑制时加重,而过表达 AQP11 时减轻,同时谷氨酸代谢功能增强,细胞死亡减少。在增生性 DR (PDR) 患者的视网膜前膜 (ERM) 中的 Müller 胶质细胞中也验证了 AQP11 的下调。机制上,DR 中 AQP11 的下调是由 HIF-1α 依赖和非依赖的 miRNA-AQP11 轴介导的。总之,我们揭示了 miRNA-AQP11 轴介导的 AQP11 下调导致 DR 中 Müller 引流功能障碍和随后的细胞内水肿,而过表达 AQP11 可部分逆转该现象。我们的研究结果提出了 DME 发病机制的新机制,因此靶向 AQP11 调节为 DME 提供了新的治疗策略。

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