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Induction of NTPDase1/CD39 by Reactive Microglia and Macrophages Is Associated With the Functional State During EAE
Marija Jakovljevic1, Irena Lavrnja1, Iva Bozic1
1Department of Neurobiology, Institute for Biological Research "Siniša Stanković", University of Belgrade, Belgrade, Serbia.
Abstract:
Purinergic signaling is critically involved in neuroinflammation associated with multiple sclerosis (MS) and its major inflammatory animal model, experimental autoimmune encephalomyelitis (EAE). Herein, we explored the expression of ectonucleoside triphosphate diphosphohydrolase1 (NTPDase1/CD39) in the spinal cord, at the onset (Eo), peak (Ep), and end (Ee) of EAE. Several-fold increase in mRNA and in NTPDase1 protein levels were observed at Eo and Ep. In situ hybridization combined with fluorescent immunohistochemistry showed that reactive microglia and infiltrated mononuclear cells mostly accounted for the observed increase. Colocalization analysis revealed that up to 80% of Iba1 immunoreactivity and ∼50% of CD68 immunoreactivity was colocalized with NTPDase1, while flow cytometric analysis revealed that ∼70% of mononuclear infiltrates were NTPDase1+ at Ep. Given the main role of NTPDase1 to degrade proinflammatory ATP, we hypothesized that the observed up-regulation of NTPDase1 may be associated with the transition between proinflammatory M1-like to neuroprotective M2-like phenotype of microglia/macrophages during EAE. Functional phenotype of reactive microglia/macrophages that overexpress NTPDase1 was assessed by multi-image colocalization analysis using iNOS and Arg1 as selective markers for M1 and M2 reactive states, respectively. At the peak of EAE NTPDase1 immunoreactivity showed much higher co-occurrence with Arg1 immunoreactivity in microglia and macrophages, compared to iNOS, implying its stronger association with M2-like reactive phenotype. Additionally, in ∼80% of CD68 positive cells NTPDase1 was coexpressed with Arg1 compared to negligible fraction coexpresing iNOS and ∼15% coexpresing both markers, additionally indicating prevalent association of NTPDase1 with M2-like microglial/macrophages phenotype at Ep. Together, our data suggest an association between NTPDase1 up-regulation by reactive microglia and infiltrated macrophages and their transition toward antiinflammatory phenotype in EAE.
Insights
Ectonucleoside triphosphate diphosphohydrolase1 (NTPDase1/CD39) expression increases in the spinal cord during experimental autoimmune encephalomyelitis (EAE). This upregulation is linked to microglia and macrophages shifting towards a neuroprotective M2-like phenotype.
Area of Science:
- Neuroimmunology
- Purinergic Signaling
- Neuroinflammation
Background:
- Purinergic signaling plays a key role in neuroinflammation, particularly in multiple sclerosis (MS) and its animal model, experimental autoimmune encephalomyelitis (EAE).
- Ectonucleoside triphosphate diphosphohydrolase1 (NTPDase1/CD39) is an enzyme involved in purinergic signaling, with a known role in modulating inflammation.
Purpose of the Study:
- To investigate the expression and cellular localization of NTPDase1 in the spinal cord during different stages of EAE.
- To determine the association of NTPDase1 upregulation with microglial and macrophage phenotypes during EAE.
Main Methods:
- Quantitative analysis of NTPDase1 mRNA and protein levels in the spinal cord at the onset, peak, and end of EAE.
- In situ hybridization and fluorescent immunohistochemistry to identify cells expressing NTPDase1.
- Flow cytometry to analyze NTPDase1 expression on mononuclear infiltrates.
- Colocalization studies using markers for microglial activation (Iba1, CD68) and macrophage phenotypes (iNOS for M1, Arg1 for M2).
Main Results:
- NTPDase1 mRNA and protein levels significantly increased at the onset and peak of EAE.
- Reactive microglia and infiltrated mononuclear cells were the primary sources of increased NTPDase1.
- NTPDase1 expression showed a strong colocalization with the M2-like phenotype marker Arg1, particularly in CD68-positive cells, and less with the M1-like marker iNOS at the peak of EAE.
- Approximately 70% of mononuclear infiltrates expressed NTPDase1 at the peak of EAE.
Conclusions:
- NTPDase1 is upregulated in the spinal cord during EAE, primarily by reactive microglia and macrophages.
- The increased expression of NTPDase1 is associated with the transition of microglia/macrophages towards an anti-inflammatory, M2-like phenotype during EAE.
- NTPDase1 may play a crucial role in the resolution of neuroinflammation in EAE by promoting a shift to a neuroprotective phenotype.
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