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The human P2X7 receptor alters microglial morphology and cytokine secretion following immunomodulation
Iven-Alex von Mücke-Heim1, Jana Martin1, Manfred Uhr2
1Molecular Neurogenetics, Max Planck Institute of Psychiatry, Munich, Germany.
Abstract:
Introduction: In recent years, purinergic signaling via the P2X7 receptor (P2X7R) on microglia has repeatedly been implicated in depression genesis. However, it remains unclear which role the human P2X7R (hP2X7R) plays in regulating both microglia morphology and cytokine secretion upon different environmental and immune stimuli, respectively. Methods: For this purpose, we used primary microglial cultures derived from a humanized microglia-specific conditional P2X7R knockout mouse line to emulate different gene-environment interactions between microglial hP2X7R and molecular proxies of psychosocial and pathogen-derived immune stimuli. Microglial cultures were subjected to treatments with the agonists 2'(3')-O-(4-benzoylbenzoyl)-ATP (BzATP) and lipopolysaccharides (LPS) combined with specific P2X7R antagonists (JNJ-47965567, A-804598). Results: Morphotyping revealed overall high baseline activation due to the in vitro conditions. Both BzATP and LPS + BzATP treatment increased round/ameboid microglia and decreased polarized and ramified morphotypes. This effect was stronger in hP2X7R-proficient (CTRL) compared to knockout (KO) microglia. Aptly, we found antagonism with JNJ-4796556 and A-804598 to reduce round/ameboid microglia and increase complex morphologies only in CTRL but not KO microglia. Single cell shape descriptor analysis confirmed the morphotyping results. Compared to KO microglia, hP2X7R-targeted stimulation in CTRLs led to a more pronounced increase in microglial roundness and circularity along with an overall higher decrease in aspect ratio and shape complexity. JNJ-4796556 and A-804598, on the other hand, led to opposite dynamics. In KO microglia, similar trends were observed, yet the magnitude of responses was much smaller. Parallel assessment of 10 cytokines demonstrated the proinflammatory properties of hP2X7R. Following LPS + BzATP stimulation, IL-1β, IL-6, and TNFα levels were found to be higher and IL-4 levels lower in CTRL than in KO cultures. Vice versa, hP2X7R antagonists reduced proinflammatory cytokine levels and increased IL-4 secretion. Discussion: Taken together, our results help disentangle the complex function of microglial hP2X7R downstream of various immune stimuli. In addition, this is the first study in a humanized, microglia-specific in vitro model identifying a so far unknown potential link between microglial hP2X7R function and IL-27 levels.
Insights
This study reveals how the human P2X7 receptor (hP2X7R) on microglia influences cell shape and cytokine release in response to immune stimuli. Blocking hP2X7R reduces pro-inflammatory responses and alters microglial morphology.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Purinergic signaling via P2X7 receptor (P2X7R) on microglia is linked to depression.
- The specific role of human P2X7R (hP2X7R) in microglial morphology and cytokine secretion under various stimuli is not fully understood.
Purpose of the Study:
- To investigate the function of microglial hP2X7R in regulating microglial morphology and cytokine secretion.
- To examine gene-environment interactions involving microglial hP2X7R and immune/psychosocial stimuli.
Main Methods:
- Primary microglial cultures from a humanized microglia-specific conditional P2X7R knockout mouse model were used.
- Cultures were treated with P2X7R agonists (BzATP) and antagonists (JNJ-47965567, A-804598), and lipopolysaccharides (LPS).
- Microglial morphology was analyzed using morphotyping and cell shape descriptors; cytokine levels (IL-1β, IL-6, TNFα, IL-4) were measured.
Main Results:
- hP2X7R activation by BzATP and LPS increased microglial roundness/ameboid morphology and decreased complex shapes, effects more pronounced in proficient cells.
- P2X7R antagonists reduced round/ameboid morphology and increased complex shapes in proficient microglia.
- hP2X7R stimulation increased pro-inflammatory cytokines (IL-1β, IL-6, TNFα) and decreased IL-4 in proficient microglia compared to knockout.
- Antagonists reduced pro-inflammatory cytokines and increased IL-4 secretion.
Conclusions:
- Microglial hP2X7R plays a significant role in modulating microglial morphology and cytokine profiles in response to immune stimuli.
- This study identifies a novel link between microglial hP2X7R function and IL-27 levels in a humanized in vitro model.
- Findings help elucidate the complex functions of microglial hP2X7R in neuroinflammation and potentially depression.
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