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Updated: Oct 12, 2025

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglia-derived TNF-α mediates Müller cell activation by activating the TNFR1-NF-κB pathway
Min Ji1, Qing Sun1, Guowei Zhang1
1Eye Institute, Affiliated Hospital of Nantong University, Nantong, 226001, China.
Abstract:
Microglia and its interaction with Müller cells are responsible to retinal surveillance during retinal neurodegeneration, however, the role and mechanism of microglia-derived tumor necrosis factor (TNF)-α in the activation of retinal Müller cells have not been fully elucidated. In the present study, primary microglia and Müller cells were isolated from newborn Sprague-Dawley (SD) rats with purities of 88.2 ± 6.2% and 92.2 ± 2.2%, respectively. By performing immunofluorescence and Western blot analysis, we found that TNF receptor (TNFR)-1 and TNFR2 were expressed in Müller cells. After co-cultured with microglia-conditioned medium (MCM), the elevated mRNA levels of glial fibrillary acidic protein (GFAP), proinflammatory factors (TNF-α, IL-1β, CXCL-1, CSF-1, NOS2, COX2) and decreased CNTF mRNA levels were found in Müller cells. However, pretreatment with R-7050 (a TNF-α receptor inhibitor) or anti-TNFR1 significantly abrogated the changes. Simultaneously, pretreatment with anti-TNFR2 slightly inhibited the expression of GFAP in MCM-incubated Müller cells. Meanwhile, anti-TNFR1 treatment reversed the increased expression of CSF-1 and IL-1β induced by TNF-α. Compared to the control groups, the phosphorylation of NF-κB P65, MAPK P38 and ERK1/2 in TNF-α-treated Müller cells was significantly increased. Nevertheless, pretreatment with anti-TNFR1 inhibited the phosphorylation of NF-κB P65 and MAPK p38, especially NF-κB P65. Additionally, pretreatment with Bay117082 (an NF-κB inhibitor) also significantly inhibited NF-κB P65 phosphorylation and GFAP expression. Moreover, anti-TNFR1 and Bay117082 treatment reduced NF-κB P65 phosphorylation of Müller cells induced by MCM. These results suggested that microglia-derived TNF-α served as a vital role in regulating Müller cells activation during retinal neurodegeneration.
Insights
Microglia-derived tumor necrosis factor-alpha (TNF-α) activates retinal Müller cells via TNF receptors, driving neuroinflammation. Inhibiting TNF-α signaling reduces Müller cell activation and inflammatory responses in retinal neurodegeneration.
Area of Science:
- Neuroscience
- Immunology
- Ophthalmology
Background:
- Microglia and Müller cells are crucial for retinal surveillance during neurodegeneration.
- The precise role of microglia-derived tumor necrosis factor-alpha (TNF-α) in Müller cell activation remains unclear.
Purpose of the Study:
- To elucidate the mechanism by which microglia-derived TNF-α activates retinal Müller cells.
- To investigate the involvement of TNF receptors (TNFRs) and downstream signaling pathways in this process.
Main Methods:
- Primary rat microglia and Müller cells were isolated and co-cultured.
- Immunofluorescence and Western blot analyses were used to detect protein expression.
- mRNA levels of key genes were quantified.
- Functional assays involved inhibitors of TNF-α receptors and NF-κB signaling.
Main Results:
- Müller cells express TNFR1 and TNFR2.
- Microglia-conditioned medium (MCM) induced Müller cell activation, characterized by increased GFAP and proinflammatory factors.
- Anti-TNFR1 treatment significantly abrogated MCM-induced changes and reversed specific inflammatory markers.
- TNF-α treatment increased phosphorylation of NF-κB P65, MAPK P38, and ERK1/2.
- Inhibition of TNFR1 or NF-κB suppressed Müller cell activation and inflammatory signaling.
Conclusions:
- Microglia-derived TNF-α plays a critical role in activating retinal Müller cells through TNFR1.
- This activation involves the NF-κB signaling pathway.
- Targeting the microglia-TNF-α-TNFR1 axis may offer therapeutic strategies for retinal neurodegeneration.
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