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TGF-β and LPS modulate ADP-induced migration of microglial cells through P2Y1 and P2Y12 receptor expression
Roberta De Simone1, Cristina Elena Niturad, Chiara De Nuccio
1Department of Cell Biology and Neurosciences, Istituto Superiore di Sanità, Rome, Italy. roberta.desimone@iss.it
Abstract:
Nucleotides act as early signals for microglial recruitment to sites of CNS injury. As microglial motility and activation can be influenced by several local factors at the site of the lesion, we investigated the effects of interferon-gamma, lipopolysaccharide (LPS) or transforming growth factor-β (TGF-β) addition to mixed glial cell cultures, on microglial migration in response to ADP, P2Y12 and P2Y1 mRNA expression as well as on the expression of an array of genes associated with the process of microglial activation. First, we demonstrated, by pharmacological inhibition and by using small interfering RNAs, that in addition to P2Y12, P2Y1 is involved in ADP-stimulated microglial migration. The ability of specific agonists to induce Ca(2+) mobilization further confirmed the expression of functional P2Y receptors in microglia. Then, we found that migratory capability and expression of both P2Y receptors were abrogated in microglial cells from LPS-stimulated mixed glial cultures, while TGF-β increased ADP-induced migration and the expression of P2Y12 and P2Y1 receptors. Interferon-gamma did not influence receptor expression or microglial migration. Finally, the patterns of gene expression induced in microglia by LPS or TGF-β treatment of mixed glial cultures were clearly distinct. LPS induced a set of classical pro-inflammatory genes, whereas TGF-β increased the expression of genes associated with atypical microglial phenotype, namely arginase-1 and TGF-β genes. These results imply that both P2Y1 and P2Y12 may guide microglia toward the lesion. They also suggest that the modulation of microglial purinergic receptors expression by local factors, through direct and/or astrocyte-mediated actions, may represent a novel mechanism affecting neuroinflammatory response.
Insights
Nucleotides signal microglial recruitment to CNS injury sites. Local factors like lipopolysaccharide (LPS) and transforming growth factor-beta (TGF-β) modulate microglial migration and purinergic receptor expression, impacting neuroinflammation.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Nucleotides are crucial early signals for microglial recruitment to central nervous system (CNS) injury sites.
- Microglial motility and activation are influenced by local factors at the lesion site.
Purpose of the Study:
- To investigate the effects of interferon-gamma, lipopolysaccharide (LPS), and transforming growth factor-beta (TGF-β) on microglial migration and purinergic receptor expression.
- To determine the role of P2Y1 and P2Y12 receptors in ADP-stimulated microglial migration.
- To analyze gene expression patterns associated with microglial activation under different stimuli.
Main Methods:
- Utilized pharmacological inhibition and small interfering RNAs to study P2Y1 and P2Y12 receptor involvement.
- Assessed calcium (Ca2+) mobilization using specific agonists to confirm functional P2Y receptor expression.
- Cultured mixed glial cells and treated them with LPS, TGF-β, or interferon-gamma, followed by analysis of microglial migration and gene expression.
Main Results:
- Both P2Y1 and P2Y12 receptors are involved in ADP-stimulated microglial migration.
- LPS stimulation abrogated microglial migratory capability and P2Y receptor expression.
- TGF-β enhanced ADP-induced migration and P2Y1/P2Y12 receptor expression, inducing an atypical microglial phenotype (e.g., arginase-1).
- Interferon-gamma did not affect receptor expression or migration.
Conclusions:
- P2Y1 and P2Y12 receptors play a role in guiding microglia to CNS lesions.
- Local factors, including LPS and TGF-β, modulate microglial purinergic receptor expression, influencing neuroinflammation.
- Astrocyte-mediated actions may contribute to the modulation of microglial responses in CNS injury.
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