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Updated: Feb 12, 2026

A Quantitative Assessment of the Phagocytosis of Allogeneic and Xenogeneic Erythrocytes by Rat Macrophages In Vitro
Published on: August 22, 2025
Activation of human macrophages by human corneal allogen in vitro
Paola Kammrath Betancor1, Antonia Hildebrand1, Daniel Böhringer1
1Eye Center, Medical Center, Faculty of Medicine, University of Freiburg, Freiburg, Germany.
Purpose:
To study distinct aspects of human monocyte-derived macrophage (MDM) activation by human corneal tissue as a possible initial stage in human corneal allograft rejection.
Methods:
Human monocytes were isolated from peripheral blood mononuclear cells (PBMC) and differentiated into MDM. Human corneas with or without endothelium were fragmented using a standardized protocol. MDM were stimulated with human corneal fragments, corneal fragment supernatant, lipopolysaccharide (LPS) or interferon-gamma (IFNγ), and expression profiles for 34 cytokines were determined in MDM-conditioned media using a Luminex bead-based multiplex assay. Data from clinical aqueous humour samples served for comparison and validation. To assess cell recruitment, immunogenicity of corneal endothelial cells (CEC), monocyte survival and differentiation, we applied transwell migration assays, cell viability assays and fluorescence-activated cell sorting, respectively.
Results:
Corneal fragments induced MDM to release distinct cytokines into the medium. Media thus conditioned in vitro by stimulated MDM shared cytokine patterns, namely MCP-1, MIP-1α and MIP-1β, with human aqueous humor samples obtained in human corneal allograft rejection. The presence of CEC in tissue fragments used for MDM stimulation attenuated the upregulation of distinct pro-inflammatory chemokines, like MCP-3 and IL-8, reduced the monocyte survival time, and diminished monocyte-to-macrophage differentiation induced by conditioned media. Distinct anti-inflammatory cytokines, like IL-4 and IL-13, were upregulated in the presence of corneal endothelium. Cornea fragment-stimulated MDMs induced recruitment of monocytes from a PBMC pool in a transwell migration model, modulated immune cell viability and promoted further immune cell recruitment and differentiation.
Conclusions:
Human macrophages respond to allogenic corneal tissue and generate an inflammatory milieu. This can drive further recruitment of immunocompetent cells and modulate cell survival and differentiation of the cells recruited. These observations are consistent with the hypothesis that macrophages play a significant role in the initiation of corneal transplant rejection. Our data also indicate that distinct aspects of early human corneal transplant rejection can be modelled in vitro.
Insights
Human macrophages activated by corneal tissue release inflammatory signals, mimicking early stages of corneal transplant rejection. This study models these crucial early immune responses in vitro.
Area of Science:
- Immunology
- Ophthalmology
- Transplantation Science
Background:
- Human corneal allograft rejection involves complex immune responses.
- Monocyte-derived macrophages (MDM) play a critical role in immune surveillance and inflammation.
- Understanding early immune activation is key to preventing transplant rejection.
Purpose of the Study:
- To investigate the activation of human MDM by corneal tissue.
- To characterize the inflammatory milieu produced by MDM stimulated with corneal fragments.
- To model early events in human corneal allograft rejection in vitro.
Main Methods:
- Isolation and differentiation of human monocytes into MDM.
- Stimulation of MDM with human corneal fragments and supernatants.
- Cytokine profiling using Luminex multiplex assay.
- Assessment of cell recruitment, viability, and differentiation via transwell assays, cell viability assays, and flow cytometry.
Main Results:
- Corneal fragments induced MDM to release specific cytokines (MCP-1, MIP-1α, MIP-1β), mirroring those found in human aqueous humor during rejection.
- Corneal endothelium presence attenuated pro-inflammatory chemokines (MCP-3, IL-8) and modulated monocyte differentiation and survival.
- MDM stimulated by corneal fragments promoted monocyte recruitment, altered immune cell viability, and enhanced immune cell recruitment and differentiation.
Conclusions:
- Human macrophages respond to corneal allografts, generating an inflammatory environment that can drive further immune cell recruitment and modulation.
- These findings support the hypothesis that macrophages are significant initiators of corneal transplant rejection.
- The study successfully models key aspects of early human corneal transplant rejection in an in vitro setting.
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