SOCS1-Derived Peptide Administered by Eye Drops Prevents Retinal Neuroinflammation and Vascular Leakage in Experimental Diabetes

Author:

Hernández CristinaORCID,Bogdanov PatriciaORCID,Gómez-Guerrero Carmen,Sampedro JoelORCID,Solà-Adell Cristina,Espejo CarmenORCID,García-Ramírez MartaORCID,Prieto Ignacio,Egido Jesús,Simó RafaelORCID

Abstract

Current treatments for diabetic retinopathy (DR) target late stages when vision has already been significantly affected. Accumulating evidence suggests that neuroinflammation plays a major role in the pathogenesis of DR, resulting in the disruption of the blood-retinal barrier. Suppressors of cytokine signaling (SOCS) are cytokine-inducible proteins that function as a negative feedback loop regulating cytokine responses. On this basis, the aim of the present study was to evaluate the effect of a SOCS1-derived peptide administered by eye drops (2 weeks) on retinal neuroinflammation and early microvascular abnormalities in a db/db mouse model. In brief, we found that SOCS1-derived peptide significantly reduced glial activation and neural apoptosis induced by diabetes, as well as retinal levels of proinflammatory cytokines. Moreover, a significant improvement of electroretinogram parameters was observed, thus revealing a clear impact of the histological findings on global retinal function. Finally, SOCS1-derived peptide prevented the disruption of the blood-retinal barrier. Overall, our results suggest that topical administration of SOCS1-derived peptide is effective in preventing retinal neuroinflammation and early microvascular impairment. These findings could open up a new strategy for the treatment of early stages of DR.

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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1. The role of Müller cells in Diabetic Retinopathy;Diabetic Retinopathy - Advancement in Understanding the Pathophysiology and Management Strategies [Working Title];2024-08-21

2. Corneal application of SOCS1/3 peptides for the treatment of eye diseases mediated by inflammation and oxidative stress;Frontiers in Immunology;2024-07-22

3. Retinal neurodegeneration: Importance in diabetes management;Chronic Complications of Diabetes Mellitus;2024

4. Blocking Hemopexin With Specific Antibodies: A New Strategy for Treating Diabetic Retinopathy;Diabetes;2023-09-18

5. Inflammation: The Link between Neural and Vascular Impairment in the Diabetic Retina and Therapeutic Implications;International Journal of Molecular Sciences;2023-05-15

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