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Updated: Aug 6, 2026

Primary Cell Cultures to Study the Regeneration Potential of Murine Müller Glia after MicroRNA Treatment
Published on: March 28, 2022
Formation of Müller glia-derived progenitor cells in retinas depleted of microglia
Heithem M El-Hodiri1, James Bentley1, Alana Reske1
1Department of Neuroscience, College of Medicine, The Ohio State University, Columbus, OH.
Abstract:
Recent studies have demonstrated the complex coordination of pro-inflammatory signaling and reactive microglia/macrophage on the formation Müller glial-derived progenitor cells (MGPCs) in the retinas of fish, birds and mice. We generated scRNA-seq libraries to identify transcriptional changes in Müller glia (MG) that result from the depletion of microglia from the chick retina. We found significant changes in different networks of genes in MG in normal and damaged retinas when the microglia are ablated. We identified a failure of MG to upregulate Wnt-ligands, Heparin binding epidermal growth factor (HBEGF), Fibroblast growth factor (FGF), retinoic acid receptors and genes related to Notch-signaling. Inhibition of GSK3β, to simulate Wnt-signaling, failed to rescue the deficit in formation of proliferating MGPCs in damaged retinas missing microglia. By comparison, application of HBEGF or FGF2 completely rescued the formation of proliferating MGPCs in microglia-depleted retinas. Similarly, injection of a small molecule inhibitor to Smad3 or agonist to retinoic acid receptors partially rescued the formation of proliferating MGPCs in microglia-depleted damaged retinas. According to scRNA-seq libraries, patterns of expression of ligands, receptors, signal transducers and/or processing enzymes to cell-signaling via HBEGF, FGF, retinoic acid and TGFβ are rapidly and transiently upregulated by MG after neuronal damage, consistent with important roles for these cell-signaling pathways in regulating the formation of MGPCs. We conclude that quiescent and activated microglia have a significant impact upon the transcriptomic profile of MG. We conclude that signals produced by reactive microglia in damaged retinas stimulate MG to upregulate cell signaling through HBEGF, FGF and retinoic acid, and downregulate signaling through TGFβ/Smad3 to promote the reprogramming on MG into proliferating MGPCs.
Insights
Microglia depletion impairs Müller glial-derived progenitor cell (MGPC) formation. However, signals like Heparin-binding epidermal growth factor (HBEGF) and Fibroblast growth factor (FGF) from microglia rescue this deficit, promoting retinal regeneration.
Area of Science:
- Retinal biology
- Neuroscience
- Cellular signaling
Background:
- Müller glia (MG) can generate progenitor cells (MGPCs) for retinal repair.
- Microglia/macrophages influence MGPC formation through pro-inflammatory signaling.
- The specific molecular mechanisms remain incompletely understood.
Conclusions:
- Microglia significantly impact the transcriptomic profile of Müller glia.
- Reactive microglia in damaged retinas stimulate MG to upregulate HBEGF, FGF, and retinoic acid signaling.
- Microglia promote MG reprogramming into proliferating MGPCs by modulating TGFβ/Smad3 signaling.
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