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Updated: Nov 19, 2025

Isolation of Primary Mouse Retinal Glial Müller Cells
Published on: August 30, 2024
PDGF Receptor Alpha Signaling Is Key for Müller Cell Homeostasis Functions
Nundehui Díaz-Lezama1, Anne Wolf2, Susanne Koch1
1Department of Physiological Genomics, Biomedical Center, Ludwig-Maximilians-Universität München, D-82152 Planegg-Martinsried, Germany.
Abstract:
Müller cells, the major retinal macroglia, are key to maintaining vascular integrity as well as retinal fluid and ion homeostasis. Although platelet derived growth factor (PDGF) receptor expression in Müller glia has been reported earlier, their actual role for Müller cell function and intimate interaction with cells of the retinal neurovascular unit remains unclear. To close this gap of knowledge, Müller cell-specific PDGF receptor alpha (PDGFRα) knockout (KO) mice were generated, characterized, and subjected to a model of choroidal neovascularization (CNV). PDGFRα-deficient Müller cells could not counterbalance hypoosmotic stress as efficiently as their wildtype counterparts. In wildtypes, the PDGFRα ligand PDGF-BB prevented Müller cell swelling induced by the administration of barium ions. This effect could be blocked by the PDGFR family inhibitor AC710. PDGF-BB could not restore the capability of an efficient volume regulation in PDGFRα KO Müller cells. Additionally, PDGFRα KO mice displayed reduced rod and cone-driven light responses. Altogether, these findings suggest that Müller glial PDGFRα is central for retinal functions under physiological conditions. In contrast, Müller cell-specific PDGFRα KO resulted in less vascular leakage and smaller lesion areas in the CNV model. Of note, the effect size was comparable to pharmacological blockade of PDGF signaling alone or in combination with anti-vascular endothelial growth factor (VEGF) therapy-a treatment regimen currently being tested in clinical trials. These data imply that targeting PDGF to treat retinal neovascular diseases may have short-term beneficial effects, but may elicit unwarranted side effects given the putative negative effects on Müller cell homeostatic functions potentially interfering with a long-term positive outcome.
Insights
Müller cells
Area of Science:
- Retinal neurobiology
- Glial cell function
- Vascular biology
Background:
- Müller cells are crucial for retinal homeostasis and vascular integrity.
- The role of platelet-derived growth factor receptor alpha (PDGFRα) in Müller cells was previously unclear.
- Understanding PDGFRα in Müller cells is vital for retinal neurovascular unit interactions.
Purpose of the Study:
- To investigate the function of Müller cell-specific PDGFRα.
- To determine the impact of PDGFRα deficiency in Müller cells on retinal physiology and disease models.
- To assess the therapeutic potential of targeting PDGF signaling in retinal neovascularization.
Main Methods:
- Generation and characterization of Müller cell-specific PDGFRα knockout (KO) mice.
- Assessment of Müller cell volume regulation under hypoosmotic stress.
- Evaluation of retinal function using electroretinography in KO mice.
- Modeling choroidal neovascularization (CNV) to study vascular leakage and lesion size.
Main Results:
- PDGFRα-deficient Müller cells exhibited impaired volume regulation.
- Müller cell-specific PDGFRα KO mice showed reduced light responses.
- Müller cell-specific PDGFRα KO significantly reduced vascular leakage and lesion size in the CNV model.
- The observed therapeutic effect in CNV was comparable to PDGF signaling blockade.
Conclusions:
- Müller glial PDGFRα is essential for normal retinal functions and homeostasis.
- Targeting PDGF signaling may offer short-term benefits for retinal neovascular diseases.
- Potential long-term adverse effects on Müller cell function warrant careful consideration for PDGF-targeted therapies.
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