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Updated: Jun 13, 2026

In Vivo Augmentation of Gut-Homing Regulatory T Cell Induction
Published on: January 22, 2020
CCR2 regulates monocyte recruitment as well as CD4 T1 allorecognition after lung transplantation
A E Gelman1, M Okazaki, S Sugimoto
1Department of Surgery, Washington University in St Louis, St Louis, MO, USA.
Abstract:
Graft rejection remains a formidable problem contributing to poor outcomes after lung transplantation. Blocking chemokine pathways have yielded promising results in some organ transplant systems. Previous clinical studies have demonstrated upregulation of CCR2 ligands following lung transplantation. Moreover, lung injury is attenuated in CCR2-deficient mice in several inflammatory models. In this study, we examined the role of CCR2 in monocyte recruitment and alloimmune responses in a mouse model of vascularized orthotopic lung transplantation. The CCR2 ligand MCP-1 is upregulated in serum and allografts following lung transplantation. CCR2 is critical for the mobilization of monocytes from the bone marrow into the bloodstream and for the accumulation of CD11c(+) cells within lung allografts. A portion of graft-infiltrating recipient CD11c(+) cells expresses both recipient and donor MHC molecules. Two-photon imaging demonstrates that recipient CD11c(+) cells are associated with recipient T cells within the graft. While recipient CCR2 deficiency does not prevent acute lung rejection and is associated with increased graft infiltration by T cells, it significantly reduces CD4(+) T(h)1 indirect and direct allorecognition. Thus, CCR2 may be a potential target to attenuate alloimmune responses after lung transplantation.
Insights
Blocking the CCR2 pathway in lung transplantation may reduce harmful immune responses. This study shows CCR2 is key for monocyte recruitment and T-cell activation, suggesting CCR2 as a therapeutic target to improve transplant outcomes.
Area of Science:
- Immunology
- Transplantation Biology
- Inflammation Research
Background:
- Graft rejection significantly impacts lung transplant outcomes.
- Chemokine pathway inhibition shows promise in organ transplantation.
- CCR2 ligands and lung injury are linked in inflammatory models.
Purpose of the Study:
- To investigate the role of CCR2 in monocyte recruitment and alloimmune responses.
- To examine CCR2's function in a mouse model of vascularized orthotopic lung transplantation.
Main Methods:
- Utilized a mouse model of orthotopic lung transplantation.
- Measured MCP-1 levels in serum and allografts.
- Assessed monocyte mobilization and CD11c(+) cell accumulation using flow cytometry and two-photon imaging.
- Analyzed T-cell responses (CD4(+) T(h)1) in CCR2-deficient mice.
Main Results:
- MCP-1, a CCR2 ligand, was upregulated post-transplantation.
- CCR2 deficiency impaired monocyte and CD11c(+) cell recruitment to lung allografts.
- Recipient CCR2 deficiency reduced CD4(+) T(h)1 indirect and direct allorecognition, despite increased T cell infiltration.
Conclusions:
- CCR2 plays a critical role in monocyte recruitment and alloimmune responses in lung transplantation.
- Targeting CCR2 may offer a strategy to attenuate detrimental alloimmune responses.
- CCR2 inhibition could be a potential therapeutic approach to improve lung transplant success.
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