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Updated: Aug 17, 2025

Reprograming Model of Human Monocyte-derived Macrophages for In-vitro Assays
Published on: April 18, 2025
Equine peripheral blood CD14+ monocyte-derived macrophage in-vitro characteristics after GM-CSF pretreatment and
Charles M Bowlby1, Devina Purmessur2, Sushmitha S Durgam1
1Department of Veterinary Clinical Sciences, College of Veterinary Medicine, The Ohio State University, Columbus, OH 43210, United States.
Abstract:
Macrophages are a heterogeneous population of immune cells that exhibit dynamic plasticity, polarize into inflammatory or regulatory/pro-resolving macrophages, and influence the healing tissue microenvironment. This study evaluated the in-vitro morphological, proliferative, cell surface marker expression and cytokine/soluble factor secretion characteristics of control, GM-CSF pretreated and inflammatory (LPS+IFN-γ) and regulatory (IL-4 + IL-10) differentiated equine CD14+ monocyte-derived macrophages. Phase contrast microscopy demonstrated that LPS+IFN-γ-primed macrophages exhibited a rounded, granular morphology, whereas IL-4 +IL-10-primed macrophages were elongated with a spindle-shaped morphology. GM-CSF enhanced the proliferation rate of monocytes/macrophages during adherent in-vitro culture. Flow cytometry analysis showed that GM-CSF alone and GM-CSF pretreatment with LPS+IFN-γ or IL-4 +IL-10 priming increased CD86 immunopositivity by 2-fold (p = 0.6); and CD206 immunopositivity remained unchanged. GM-CSF pretreatment and subsequent priming with LPS and IFN-γ yielded inflammatory macrophages that secrete significantly increased quantities of IL-1β compared to control (p = 0.012) and IL-4 +IL-10-primed (p = 0.0047) macrophages. GM-CSF pretreatment followed by both LPS + IFN-γ and IL-4 + IL-10 priming significantly increased IL-1Ra secretion by 6-fold (p < 0.05). There were no differences in TGFβ-1 secretion among control, LPS+IFN-γ or IL-4 + IL-10 primed macrophages (p = 0.85). All groups contained an average of 643 ± 51.5 pg/mL of TGFβ1. Among the culture conditions evaluated, IL-4 +IL-10 priming for 24 h after 6 days of adherent culture yielded macrophages that were the least inflammatory compared to GM-CSF pretreated and LPS+IFN-γ or IL-4 +IL-10-primed macrophages. These results provide a basis for subsequent in-vitro and in-vivo studies that investigate macrophage-tissue cell interactions and related biological mechanisms relevant to the field of immunomodulatory approaches for enhancing tissue healing.
Insights
This study characterized equine macrophages, finding that IL-4 + IL-10 priming resulted in the least inflammatory cells. These findings aid research into immunomodulatory approaches for tissue healing.
Area of Science:
- Immunology
- Cell Biology
- Veterinary Science
Background:
- Macrophages are crucial immune cells with dynamic plasticity, influencing tissue microenvironments.
- They polarize into distinct phenotypes, including inflammatory and regulatory/pro-resolving types.
- Understanding equine macrophage behavior is vital for advancing tissue healing strategies.
Purpose of the Study:
- To evaluate the in vitro characteristics of equine CD14+ monocyte-derived macrophages.
- To compare the effects of different priming strategies (GM-CSF, LPS+IFN-γ, IL-4+IL-10) on macrophage morphology, proliferation, marker expression, and cytokine secretion.
- To identify culture conditions yielding less inflammatory macrophage phenotypes for potential therapeutic applications.
Main Methods:
- Equine CD14+ monocytes were differentiated into macrophages and subjected to various priming treatments.
- Morphological changes were assessed using phase contrast microscopy.
- Proliferation rates were measured.
- Cell surface marker expression (CD86, CD206) was analyzed via flow cytometry.
- Cytokine secretion (IL-1β, IL-1Ra, TGFβ-1) was quantified.
Main Results:
- LPS+IFN-γ priming induced a rounded, granular morphology, while IL-4+IL-10 priming resulted in elongated, spindle-shaped cells.
- GM-CSF enhanced macrophage proliferation.
- GM-CSF pretreatment increased CD86 expression.
- LPS+IFN-γ-primed macrophages secreted significantly more IL-1β than control or IL-4+IL-10-primed macrophages.
- IL-4+IL-10 priming yielded the least inflammatory macrophages.
Conclusions:
- Differentiation and priming significantly alter equine macrophage characteristics.
- IL-4+IL-10 priming generates macrophages with reduced inflammatory potential.
- These findings support the development of immunomodulatory therapies for enhanced tissue repair in horses.
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