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Updated: Jul 20, 2026

Isolation and Culture of Bone Marrow-Derived Macrophages from Mice
Published on: June 23, 2023
Development of macrophages with altered actin organization in the absence of MafB
Athar Aziz1, Laurent Vanhille, Peer Mohideen
1Centre d'Immunologie de Marseille-Luminy, Campus de Luminy, Case 906, 13288 Marseille Cedex 09, France.
Abstract:
In the hematopoietic system the bZip transcription factor MafB is selectively expressed at high levels in monocytes and macrophages and promotes macrophage differentiation in myeloid progenitors, whereas a dominant-negative allele can inhibit this process. To analyze the requirement of MafB for macrophage development, we generated MafB-deficient mice and, due to their neonatal lethal phenotype, analyzed macrophage differentiation in vitro, in the embryo, and in reconstituted mice. Surprisingly we observed in vitro differentiation of macrophages from E14.5 fetal liver (FL) cells and E18.5 splenocytes. Furthermore we found normal numbers of F4/80(+)/Mac-1(+) macrophages and monocytes in fetal liver, spleen, and blood as well as in bone marrow, spleen, and peritoneum of adult MafB(-/-) FL reconstituted mice. MafB(-/-) macrophages showed intact basic macrophage functions such as phagocytosis of latex beads or Listeria monocytogenes and nitric oxide production in response to lipopolysaccharide. By contrast, MafB(-/-) macrophages expressed increased levels of multiple genes involved in actin organization. Consistent with this, phalloidin staining revealed an altered morphology involving increased numbers of branched protrusions of MafB(-/-) macrophages in response to macrophage colony-stimulating factor. Together these data point to an unexpected redundancy of MafB function in macrophage differentiation and a previously unknown role in actin-dependent macrophage morphology.
Insights
The transcription factor MafB is not essential for macrophage differentiation. MafB-deficient macrophages exhibit altered morphology due to changes in actin organization.
Area of Science:
- Hematology
- Molecular Biology
- Immunology
Background:
- The transcription factor MafB is highly expressed in monocytes and macrophages.
- MafB promotes macrophage differentiation in myeloid progenitors.
Purpose of the Study:
- To investigate the role of MafB in macrophage development and function.
- To analyze the requirement of MafB for macrophage differentiation and morphology.
Main Methods:
- Generated MafB-deficient mice.
- Analyzed macrophage differentiation in vitro, in embryonic development, and in reconstituted mice.
- Assessed macrophage functions including phagocytosis and nitric oxide production.
- Examined gene expression related to actin organization and cell morphology.
Main Results:
- MafB deficiency did not prevent macrophage differentiation in vitro or in vivo.
- MafB-deficient mice showed normal numbers of macrophages and monocytes in various tissues.
- MafB-deficient macrophages retained basic functions like phagocytosis and nitric oxide production.
- MafB-deficient macrophages displayed altered morphology with increased actin-dependent protrusions.
Conclusions:
- MafB function in macrophage differentiation shows unexpected redundancy.
- MafB plays a previously unrecognized role in regulating macrophage morphology through actin organization.
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