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Updated: Aug 15, 2026

Müller Glia Cell Activation in a Laser-induced Retinal Degeneration and Regeneration Model in Zebrafish
Published on: October 27, 2017
Activation of microglia and chemokines in light-induced retinal degeneration
Cheng Zhang1, Ji-Kui Shen, Tim T Lam
1Wilmer Eye Institute, Johns Hopkins University School of Medicine, Baltimore, MD, USA. czhang1@jhmi.edu
Purpose:
Microglial cells, which are activated and recruited by chemokines, have been shown to play crucial roles in neuronal degenerations of the central nervous system (CNS). This study investigated the activation and migration of retinal microglial cells and expression of chemokines in retinas in light-induced photoreceptor degeneration in mice.
Methods:
Ninety-five Balb/cJ mice were kept in cyclic light for 1 week followed by dark adaptation for 48 h prior to light exposure of 3 h at 3.5 Klux. Animals were enthuanized at various times after light exposure. Terminal deoxynucleotidyl transferase-mediated dUTP nick end label (TUNEL) assay, rat-anti-mouse CD11b and 5D4 antibodies, isolectin-B4, and a chemokine-specific gene array were used to detect DNA fragmentation during retinal degeneration, to label retinal microglial cells, and to determine the expression of retinal chemokines and chemokine receptors, respectively. Reverse-transcriptase coupled polymerase chain reactions (RT-PCRs) were conducted on selected chemokine mRNAs to confirm the gene array findings.
Results:
After intense light exposure, TUNEL-positive cells were noted in the outer nuclear layer (ONL) of the retina at 3 h, and their presence were noticeably increased at 1 day but declined at 3 days and 7 days after light exposure. In contrast, CD11b- or isolectin-B4-positive cells were seen in the ONL as early as 6 h and their presence increased significantly at 1 day and 3 days after light exposure. These cells displayed a round or ovoid morphology at 6 h and 1 day but assumed a more ameboid configuration at 3 days. By 7 day, the number of the microglial cells declined in the ONL and they became ramified, and were present mostly in the subretinal space. 5D4-positive cells with large cell bodies were only noted at 3 day and 7 day but not earlier. With chemokine-specific gene array analysis, we identified four chemokines and two chemokine receptors showing significant increases in their gene expressions. Among them, monocyte chemoattractant protein-3 (MCP-3), showed a remarkable 4.4 fold increase in its gene expression. RT-PCR confirmed a marked increase of MCP-3 expression in retinas at 3 h to 1 day, and a return to normal at 3 days following light injury.
Conclusions:
Retinal chemokines such as MCP-3 and their receptors are involved in the activation and migration of retinal microglia in light-induced retinal degeneration, which in turn modulate the apoptotic loss of photoreceptor cells in the outer retina.
Insights
This study shows that chemokines, like monocyte chemoattractant protein-3 (MCP-3), are key players in activating and moving retinal microglial cells during light-induced photoreceptor degeneration.
Area of Science:
- Neuroscience
- Ophthalmology
- Immunology
Background:
- Microglial cells are crucial in central nervous system (CNS) neurodegeneration.
- Chemokines are known to activate and recruit microglial cells.
Purpose of the Study:
- Investigate microglial cell activation and migration in the retina.
- Examine chemokine expression during light-induced photoreceptor degeneration in mice.
Main Methods:
- Utilized TUNEL assay, CD11b, 5D4 antibodies, and isolectin-B4 for cell labeling and DNA fragmentation detection.
- Employed chemokine-specific gene arrays and RT-PCR to analyze chemokine and receptor expression.
- Studied Balb/cJ mice exposed to intense light to induce photoreceptor degeneration.
Main Results:
- Photoreceptor cell death (TUNEL-positive cells) observed within 3 hours of light exposure.
- Microglial cells (CD11b/isolectin-B4 positive) infiltrated the outer nuclear layer starting at 6 hours, with increased presence and amoeboid morphology by 3 days.
- Significant upregulation of four chemokines and two receptors, notably monocyte chemoattractant protein-3 (MCP-3) with a 4.4-fold increase, confirmed by RT-PCR.
Conclusions:
- Retinal chemokines, particularly MCP-3, and their receptors mediate microglial activation and migration.
- These processes are integral to the pathogenesis of light-induced retinal degeneration.
- Microglial cell activity influences photoreceptor apoptosis in the outer retina.
