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Updated: Aug 14, 2026

Generation and Identification of GM-CSF Derived Alveolar-like Macrophages and Dendritic Cells From Mouse Bone Marrow
Published on: June 25, 2016
GM-CSF in association with IL-1 triggers day-8 CFU-S into cell cycle: role of histamine
C Piquet-Pellorce1, E Schneider, M Dy
1INSERM U 25 - CNRS URA 122, Hôpital Necker, Paris, France.
Abstract:
Our recent evidence for the requirement of endogeneous histamine in IL-3-induced proliferation of day-8 CFU-S has prompted us to investigate whether or not GM-CSF, which shares with IL-3 the ability to stimulate bone marrow histamine synthesis, could also affect the cell cycle status of CFU-S via this mediator. We show herein that recombinant GM-CSF alone fails to trigger day-8 CFU-S into S phase, but supports their survival. However, in the same experimental conditions, GM-CSF in combination with IL-1 induces a CFU-S proliferation similar to that obtained in response to IL-3, while IL-1 by itself has no effect on this biological activity. We further provide evidence that this phenomenon is completely abolished: i) by preventing GM-CSF-induced histamine synthesis by alpha-FMH, the specific inhibitor of histidine decarboxylase (HDC), or ii) by blocking the binding sites of H2 histamine receptors with their specific antagonist oxmetidine. Similar results are obtained when progenitor-enriched bone marrow cells are used instead of the unfractionated population. In addition, we provide an argument in support of a histamine receptor modulation by GM-CSF that could explain the lack of effect of factor-induced histamine on day-8 CFU-S cell cycling. Indeed, the entry of these progenitors into S phase that is normally promoted by dimaprit, a specific histamine H2 receptor agonist, is abolished by a preincubation with GM-CSF. Taken together, our data support the conclusion that IL-1 makes CFU-S sensitive to GM-CSF-induced endogeneous histamine that will trigger them into cell cycle, while GM-CSF alone has no such effect on this biological activity.
Insights
Granulocyte-macrophage colony-stimulating factor (GM-CSF) alone does not induce day-8 CFU-S proliferation. However, combined with IL-1, GM-CSF triggers proliferation via histamine synthesis, requiring IL-1 to sensitize cells.
Area of Science:
- Hematology
- Immunology
- Cell Biology
Background:
- Endogenous histamine is crucial for IL-3-induced proliferation of day-8 CFU-S.
- GM-CSF, like IL-3, stimulates bone marrow histamine synthesis, suggesting a potential role in CFU-S cell cycle regulation.
Purpose of the Study:
- To investigate if GM-CSF influences CFU-S cell cycle status through histamine mediation.
- To elucidate the synergistic effects of GM-CSF and IL-1 on CFU-S proliferation.
Main Methods:
- Recombinant GM-CSF and IL-1 were used to treat day-8 CFU-S.
- Histamine synthesis inhibition using alpha-FMH (histidine decarboxylase inhibitor).
- Histamine receptor blockade using oxmetidine and dimaprit (H2 receptor agonist).
Main Results:
- GM-CSF alone supported CFU-S survival but did not induce S phase entry.
- GM-CSF combined with IL-1 induced CFU-S proliferation, mimicking IL-3 effects.
- Inhibition of histamine synthesis or H2 receptor blockade abolished GM-CSF/IL-1-induced proliferation.
- GM-CSF preincubation blocked dimaprit-induced S phase entry, indicating histamine receptor modulation.
Conclusions:
- IL-1 sensitizes CFU-S to GM-CSF-induced endogenous histamine, triggering cell cycle entry.
- GM-CSF alone does not induce CFU-S proliferation but modulates histamine receptor activity.
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