Related Experiment Video
Updated: Mar 10, 2026

Author Spotlight: Insight Into Advances in Prion Diseases Research
Published on: August 11, 2023
A2B adenosine receptors stimulate IL-6 production in primary murine microglia through p38 MAPK kinase pathway
Stefania Merighi1, Serena Bencivenni1, Fabrizio Vincenzi1
1Department of Medical Sciences, University of Ferrara, Ferrara 44121, Italy.
Abstract:
The hallmark of neuroinflammation is the activation of microglia, the immunocompetent cells of the CNS, releasing a number of proinflammatory mediators implicated in the pathogenesis of neuronal diseases. Adenosine is an ubiquitous autacoid regulating several microglia functions through four receptor subtypes named A1, A2A, A2B and A3 (ARs), that represent good targets to suppress inflammation occurring in CNS. Here we investigated the potential role of ARs in the modulation of IL-6 secretion and cell proliferation in primary microglial cells. The A2BAR agonist 2-[[6-Amino-3,5-dicyano-4-[4-(cyclopropylmethoxy)phenyl]-2-pyridinyl]thio]-acetamide (BAY60-6583) stimulated IL-6 increase under normoxia and hypoxia, in a dose- and time-dependent way. In cells incubated with the blockers of phospholipase C (PLC), protein kinase C epsilon (PKC-ε) and PKC delta (PKC-δ) the IL-6 increase due to A2BAR activation was strongly reduced, whilst it was not affected by the inhibitor of adenylyl cyclase (AC). Investigation of cellular signalling involved in the A2BAR effect revealed that only the inhibitor of p38 mitogen activated protein kinase (MAPK) was able to block the agonist's effect on IL-6 secretion, whilst inhibitors of pERK1/2, JNK1/2 MAPKs and Akt were not. Stimulation of p38 by BAY60-6583 was A2BAR-dependent, through a pathway affecting PLC, PKC-ε and PKC-δ but not AC, in both normoxia and hypoxia. Finally, BAY60-6583 increased microglial cell proliferation involving A2BAR, PLC, PKC-ε, PKC-δ and p38 signalling. In conclusion, A2BARs activation increased IL-6 secretion and cell proliferation in murine primary microglial cells, through PLC, PKC-ε, PKC-δ and p38 pathways, thus suggesting their involvement in microglial activation and neuroinflammation.
Insights
Activation of A2B adenosine receptors (ARs) boosts IL-6 secretion and microglial cell proliferation. This neuroinflammation pathway involves PLC, PKC-ε, PKC-δ, and p38 MAPK signaling in CNS immune cells.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Neuroinflammation, characterized by microglial activation and pro-inflammatory mediator release, contributes to neuronal diseases.
- Adenosine receptors (ARs) regulate microglial functions and are potential therapeutic targets for CNS inflammation.
Purpose of the Study:
- To investigate the role of adenosine receptors (ARs) in modulating IL-6 secretion and microglial cell proliferation.
- To elucidate the specific signaling pathways involved in A2B AR-mediated effects on microglia.
Main Methods:
- Primary murine microglial cells were treated with the A2B AR agonist BAY60-6583 under normoxia and hypoxia.
- Involvement of signaling molecules like phospholipase C (PLC), protein kinase C epsilon (PKC-ε), PKC delta (PKC-δ), adenylyl cyclase (AC), and p38 mitogen-activated protein kinase (MAPK) was assessed using specific inhibitors.
- IL-6 secretion and cell proliferation were measured to evaluate the effects of agonist and inhibitor treatments.
Main Results:
- The A2B AR agonist BAY60-6583 dose- and time-dependently increased IL-6 secretion under both normoxic and hypoxic conditions.
- This IL-6 increase was mediated by A2B ARs through phospholipase C (PLC), PKC-ε, PKC-δ, and p38 MAPK signaling pathways, but not adenylyl cyclase (AC).
- BAY60-6583 also enhanced microglial cell proliferation via A2B AR, PLC, PKC-ε, PKC-δ, and p38 MAPK signaling.
Conclusions:
- Activation of A2B ARs stimulates IL-6 secretion and proliferation in primary microglial cells.
- The signaling cascade involves A2B ARs, PLC, PKC-ε, PKC-δ, and p38 MAPK.
- These findings highlight the role of A2B ARs in microglial activation and neuroinflammation, suggesting potential therapeutic targets.
More Related Videos
Related Concept Videos
MAPK Signaling Cascades
The JAK-STAT Signaling Pathway

