Related Experiment Video
Updated: Mar 17, 2026

Retinal Pigment Epithelium Transplantation in a Non-human Primate Model for Degenerative Retinal Diseases
Published on: June 14, 2021
Immunosuppression, peripheral inflammation and invasive infection from endogenous gut microbiota activate retinal
Victoria Maneu1, Agustina Noailles2, Violeta Gómez-Vicente1
1Department of Optics, Pharmacology and Anatomy, University of Alicante, Pabellon 13, Carretera San Vicente del Raspeig s/n, 03690-San Vicente del Raspeig, Alicante, Spain.
Abstract:
Although its actual role in the progression of degenerative processes is not fully known, the persistent activated state of retinal microglia and the concurrent secretion of inflammatory mediators may contribute to neuronal death and permanent vision loss. Our objective was to determine whether non-ocular conditions (immunosuppression and peripheral inflammation) could lead to activation of retinal microglia. Mouse models of immunosuppression induced by cyclophosphamide and/or peripheral inflammation by chemically induced sublethal colitis in C57BL/6J mice were used. Retinal microglia morphology, spatial distribution and complexity, as well as MHCII and CD11b expression levels were determined by flow cytometry and confocal immunofluorescence analysis with anti-CD11b, anti-IBA1 and anti-MHCIIRT1B antibodies. Retinas of mice with double treatment showed changes in microglial morphology, spatial distribution and expression levels of CD11b and MHCII. These effects were higher than those observed with any treatment separately. In addition, we also observed in these mice: (i) translocation of endogenous bacteria from gut to liver, and (ii) upregulation of TLR2 expression in retinal microglia. Using a mouse model of immunosuppression and gut colonization by Candida albicans, translocation of fungal cells was confirmed to occur in wild type and, to a higher extent, in TLR2 KO mice, which are more susceptible to fungal invasion; interestingly microglial changes were also higher in TLR2 KO mice. Hence, non-ocular injuries (immunosuppression, peripheral inflammation and invasive infection from endogenous gut microbiota) can activate retinal microglia and therefore could affect the progression of neurodegenerative disorders and should be taken into account to improve therapeutic options.
Insights
Non-ocular conditions like immunosuppression and gut inflammation activate retinal microglia, potentially worsening neurodegenerative diseases. These findings highlight the need to consider systemic health for vision preservation strategies.
Area of Science:
- Immunology
- Neuroscience
- Ophthalmology
Background:
- Persistent activation of retinal microglia and inflammatory mediators may cause neuronal death and vision loss.
- The role of non-ocular conditions in retinal microglia activation is not fully understood.
Purpose of the Study:
- To investigate if immunosuppression and peripheral inflammation activate retinal microglia.
- To determine the impact of combined non-ocular injuries on retinal microglia.
Main Methods:
- Mouse models of cyclophosphamide-induced immunosuppression and chemically induced colitis.
- Flow cytometry and confocal immunofluorescence analysis of retinal microglia morphology, distribution, and marker expression (CD11b, MHCII, IBA1).
- Assessment of gut-to-liver bacterial translocation and TLR2 expression in retinal microglia.
Main Results:
- Combined immunosuppression and colitis induced significant changes in microglial morphology, distribution, and CD11b/MHCII expression.
- Non-ocular injuries led to gut bacterial translocation and increased TLR2 expression in retinal microglia.
- Infection models showed fungal translocation and exacerbated microglial changes in TLR2 knockout mice.
Conclusions:
- Non-ocular conditions, including immunosuppression, peripheral inflammation, and gut microbiota dysbiosis, can activate retinal microglia.
- Activated retinal microglia may contribute to neurodegenerative processes, impacting vision.
- These findings suggest considering systemic health factors to improve therapeutic strategies for vision loss.
More Related Videos
12:48In Vivo Dynamics of Retinal Microglial Activation During Neurodegeneration: Confocal Ophthalmoscopic Imaging and Cell Morphometry in Mouse Glaucoma
Published on: May 11, 2015
06:24Generation of Human Microglia to Combine Them with Retinal Organoids for Improved Disease Modeling
Published on: July 26, 2024