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Updated: Nov 3, 2025

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Histamine triggers microglial responses indirectly via astrocytes and purinergic signaling
Pengfei Xia1,2, Francesca Logiacco1,3, Yimin Huang1,2
1Cellular Neurosciences, Max-Delbrück-Center for Molecular Medicine in the Helmholtz Association, Berlin, Germany.
Abstract:
Histamine is a monoaminergic neurotransmitter which is released within the entire brain from ascending axons originating in the tuberomammillary nucleus in a sleep state-dependent fashion. Besides the modulation of neuronal firing patterns, brain histamine levels are also thought to modulate functions of glial cells. Microglia are the innate immune cells and professional phagocytes of the central nervous system, and histamine was previously shown to have multiple effects on microglial functions in health and disease. Isolated microglia respond only to agonists of the Hrh2 subtype of histamine receptors (Hrh), and the expression of that isoform is confirmed by a metadata analysis of microglia transcriptomes. When we studied the effect of the histamine receptor isoforms in cortical and thalamic microglia by in situ live cell Ca2+ imaging using a novel, microglia-specific indicator mouse line, microglial cells respond to external histamine application mainly in a Hrh1-, and to a lower extent also in a Hrh2-dependent manner. The Hrh1 response was sensitive to blockers of purinergic P2ry12 receptors, and since Hrh1 expression was predominantly found in astrocytes, we suggest that the Hrh1 response in microglia is mediated by astrocyte ATP release and activation of P2ry12 receptors in microglia. Histamine also stimulates microglial phagocytic activity via Hrh1- and P2ry12-mediated signaling. Taken together, we provide evidence that histamine acts indirectly on microglial Ca2+ levels and phagocytic activity via astrocyte histamine receptor-controlled purinergic signaling.
Insights
Histamine indirectly influences brain immune cell activity. It signals through astrocytes to modulate microglial calcium levels and phagocytosis, impacting central nervous system functions.
Area of Science:
- Neuroscience
- Neuroimmunology
- Cellular Signaling
Background:
- Histamine, a neurotransmitter, modulates brain functions and glial cell activity.
- Microglia, the CNS immune cells, are known targets of histamine, but receptor subtypes involved were unclear.
- Previous studies indicated isolated microglia respond to histamine via Hrh2 receptors.
Purpose of the Study:
- To investigate the specific histamine receptor subtypes mediating histamine's effects on cortical and thalamic microglia.
- To elucidate the signaling pathways involved in histamine-induced microglial responses.
- To determine if histamine affects microglial phagocytic activity.
Main Methods:
- In situ live cell Ca2+ imaging in a novel microglia-specific indicator mouse line.
- Application of histamine and receptor blockers (Hrh1, Hrh2, P2ry12).
- Transcriptome metadata analysis to confirm receptor expression.
Main Results:
- Microglia responded to histamine primarily via Hrh1 receptors, and to a lesser extent, Hrh2 receptors.
- The Hrh1 response was dependent on purinergic P2ry12 receptors, suggesting astrocyte involvement.
- Histamine enhanced microglial phagocytic activity through Hrh1 and P2ry12 signaling.
Conclusions:
- Histamine indirectly modulates microglial Ca2+ levels and phagocytosis.
- Astrocyte histamine receptor activation leads to ATP release, activating microglial P2ry12 receptors.
- This astrocyte-microglia purinergic signaling pathway is crucial for histamine's effects on microglia.
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