Connecting Immune Cell Infiltration to the Multitasking Microglia Response and TNF Receptor 2 Induction in the
Caterina Veroni1, Barbara Serafini1, Barbara Rosicarelli1
1Department of Neuroscience, Istituto Superiore di Sanità, Rome, Italy.
Abstract:
Signaling from central nervous system (CNS)-infiltrating lymphocytes and macrophages is critical to activate microglia and cause tissue damage in multiple sclerosis (MS). We combined laser microdissection with high-throughput real time RT-PCR to investigate separately the CNS exogenous and endogenous inflammatory components in postmortem brain tissue of progressive MS cases. A previous analysis of immune infiltrates isolated from the white matter (WM) and the meninges revealed predominant expression of genes involved in antiviral and cytotoxic immunity, including IFNγ and TNF. Here, we assessed the expression of 71 genes linked to IFN and TNF signaling and microglia/macrophage activation in the parenchyma surrounding perivascular cuffs at different stages of WM lesion evolution and in gray matter (GM) lesions underlying meningeal infiltrates. WM and GM from non-neurological subjects were used as controls. Transcriptional changes in the WM indicate activation of a classical IFNγ-induced macrophage defense response already in the normal-appearing WM, amplification of detrimental (proinflammatory/pro-oxidant) and protective (anti-inflammatory/anti-oxidant) responses in actively demyelinating WM lesions and persistence of these dual features at the border of chronic active WM lesions. Transcriptional changes in chronic subpial GM lesions indicate skewing toward a proinflammatory microglia phenotype. TNF receptor 2 (TNFR2) mediating TNF neuroprotective functions was one of the genes upregulated in the MS WM. Using immunohistochemistry we show that TNFR2 is highly expressed in activated microglia in the normal-appearing WM, at the border of chronic active WM lesions, and in foamy macrophages in actively demyelinating WM and GM lesions. In lysolecithin-treated mouse cerebellar slices, a model of demyelination and remyelination, TNFR2 RNA and soluble protein increased immediately after toxin-induced demyelination along with transcripts for microglia/macrophage-derived pro- and anti-inflammatory cytokines. TNFR2 and IL10 RNA and soluble TNFR2 protein remained elevated during remyelination. Furthermore, myelin basic protein expression was increased after selective activation of TNFR2 with an agonistic antibody. This study highlights the key role of cytotoxic adaptive immunity in driving detrimental microglia activation and the concomitant healing response. It also shows that TNFR2 is an early marker of microglia activation and promotes myelin synthesis, suggesting that microglial TNFR2 activation can be exploited therapeutically to stimulate CNS repair.
Insights
Central nervous system (CNS) inflammation in multiple sclerosis (MS) involves both damaging and healing immune responses. Tumor necrosis factor receptor 2 (TNFR2) is an early marker of microglia activation and promotes myelin repair.
Area of Science:
- Neuroimmunology
- Cellular and Molecular Neuroscience
Background:
- Central nervous system (CNS) inflammation, driven by lymphocytes and macrophages, activates microglia and damages tissue in multiple sclerosis (MS).
- Previous studies identified antiviral and cytotoxic immune gene expression in MS immune infiltrates.
Purpose of the Study:
- To investigate CNS inflammatory components and microglia/macrophage activation in postmortem MS brain tissue.
- To analyze gene expression related to interferon (IFN) and tumor necrosis factor (TNF) signaling in different MS lesion stages.
- To explore the role of TNF receptor 2 (TNFR2) in microglia activation and myelin repair.
Main Methods:
- Combined laser microdissection with high-throughput real-time RT-PCR on postmortem MS brain tissue.
- Assessed expression of 71 genes related to IFN and TNF signaling and microglia/macrophage activation.
- Utilized immunohistochemistry and a mouse model of demyelination/remyelination (lysolecithin-treated cerebellar slices).
Main Results:
- IFNγ-induced macrophage defense response and dual pro-/anti-inflammatory responses were observed in active and chronic active MS white matter lesions.
- Chronic subpial gray matter lesions showed a pro-inflammatory microglia phenotype.
- TNFR2 was upregulated in MS white matter and highly expressed in activated microglia and macrophages.
- In a mouse model, TNFR2 expression increased during demyelination and remyelination, and its activation promoted myelin basic protein expression.
Conclusions:
- Cytotoxic adaptive immunity drives detrimental microglia activation alongside a healing response in MS.
- TNFR2 is an early indicator of microglia activation and supports myelin synthesis.
- Targeting microglial TNFR2 activation offers a potential therapeutic strategy for CNS repair in MS.
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