Literature DB >> 33334874

Interphotoreceptor Retinol-Binding Protein Ameliorates Diabetes-Induced Retinal Dysfunction and Neurodegeneration Through Rhodopsin.

Jianglei Chen1, Yan Shao1,2, Temmy Sasore1, Gennadiy Moiseyev1, Kelu Zhou1, Xiang Ma3, Yanhong Du3, Jian-Xing Ma3,4.   

Abstract

Patients with diabetes often experience visual defects before any retinal pathologies are detected. The molecular mechanism for the visual defects in early diabetes has not been elucidated. Our previous study reported that in early diabetic retinopathy (DR), rhodopsin levels were reduced due to impaired 11-cis-retinal regeneration. Interphotoreceptor retinol-binding protein (IRBP) is a visual cycle protein and important for 11-cis-retinal generation. IRBP levels are decreased in the vitreous and retina of DR patients and animal models. To determine the role of IRBP downregulation in the visual defects in early DR, we induced diabetes in transgenic mice overexpressing IRBP in the retina. IRBP overexpression prevented diabetes-induced decline of retinal function. Furthermore, IRBP overexpression also prevented decreases of rhodopsin levels and 11-cis-retinal generation in diabetic mice. Diabetic IRBP transgenic mice also showed ameliorated retinal oxidative stress, inflammation, apoptosis, and retinal degeneration compared with diabetic wild-type mice. These findings suggest that diabetes-induced IRBP downregulation impairs the regeneration of 11-cis-retinal and rhodopsin, leading to retinal dysfunction in early DR. Furthermore, increased 11-cis-retinal-free opsin constitutively activates the phototransduction pathway, leading to increased oxidative stress and retinal neurodegeneration. Therefore, restored IRBP expression in the diabetic retina may confer a protective effect against retinal degeneration in DR.
© 2020 by the American Diabetes Association.

Entities:  

Year:  2020        PMID: 33334874     DOI: 10.2337/db20-0609

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  5 in total

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Journal:  Mol Cell Biochem       Date:  2022-07-02       Impact factor: 3.396

2.  Mesenchymal stem cells-derived small extracellular vesicles alleviate diabetic retinopathy by delivering NEDD4.

Authors:  Fengtian Sun; Yuntong Sun; Junyan Zhu; Xiaoling Wang; Cheng Ji; Jiahui Zhang; Shenyuan Chen; Yifan Yu; Wenrong Xu; Hui Qian
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Review 3.  Relevance of Peptide Homeostasis in Metabolic Retinal Degenerative Disorders: Curative Potential in Genetically Modified Mice.

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Journal:  Front Pharmacol       Date:  2022-01-13       Impact factor: 5.810

4.  Albumin-to-Alkaline Phosphatase Ratio as a Prognostic Biomarker for Spinal Fusion in Lumbar Degenerative Diseases Patients Undergoing Lumbar Spinal Fusion.

Authors:  Youfeng Guo; Haihong Zhao; Haowei Xu; Huida Gu; Yang Cao; Kai Li; Ting Li; Tao Hu; Shanjin Wang; Weidong Zhao; Desheng Wu
Journal:  J Clin Med       Date:  2022-08-12       Impact factor: 4.964

5.  Inhibiting the activation of MAPK (ERK1/2) in stressed Müller cells prevents photoreceptor degeneration.

Authors:  Shaoxue Zeng; Ting Zhang; Yingying Chen; Joshua Chu-Tan; Kaiyu Jin; So-Ra Lee; Michelle X Yam; Michele C Madigan; Nilisha Fernando; Adrian Cioanca; Fanfan Zhou; Meidong Zhu; Junjun Zhang; Riccardo Natoli; Xiaohui Fan; Ling Zhu; Mark C Gillies
Journal:  Theranostics       Date:  2022-09-11       Impact factor: 11.600

  5 in total

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