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◆ Veterinary Quarterly2025-12-13· Cell biology

Equine monocyte-derived macrophages revisited: isolation and comprehensive characterization of pro- versus anti-inflammatory polarisation

Marguerite Meeremans, Bert Devriendt, Sarah Bairiot, Mario Van Poucke, Luc Peelman, Kristel Demeyere, Evelyne Meyer, Sandra Van Vlierberghe, Catharina De Schauwer

原始摘要(英文原文)· Original abstract
Macrophages play key roles in tissue homeostasis and regeneration-associated inflammation. Unlike humans, a reliable protocol to obtain and polarise equine monocyte-derived macrophages is lacking. In this study the polarisation of equine macrophages, derived from CD172a+ peripheral blood monocytes is described. After differentiation, IFN-γ/LPS or IL-4 were used to induce pro- and anti-inflammatory phenotypes, respectively. Evaluation criteria included morphology, mRNA (RT-qPCR) and protein expression (flow cytometry, immunofluorescence), nitric oxide and arginase production, cytokine secretion (multiplex), and functional effects of conditioned medium (CM). IFN-γ/LPS-stimulated cells exhibited a rounded morphology with cytoplasmic extensions, while IL-4 stimulation induced spindle-shaped and multinucleated giant cells. IFN-γ/LPS upregulated CXCL8, CD86, IL10 and TGFB1 mRNA, whereas IL-4 upregulated CXCL8, MRC1 and TGFB1. Polarisation was confirmed with IFN-γ/LPS-stimulated macrophages expressing CD86 and secreting TNFα and IL-1β, while IL-4-stimulation increased CD206 positivity and VEGFα expression. Increased proliferation and altered mRNA expression in tendon cells treated with 50% CM further validate the functional impact of macrophage polarisation. In summary, a robust protocol to obtain equine macrophages was developed, followed by in-depth characterization of their pro- and anti-inflammatory polarisation. Given the horse’s increasing relevance as large animal model, this research holds both a strong species-specific and translational value.
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