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Pulmonary CCR2+CD4+ T cells are immune regulatory and attenuate lung fibrosis development
Katrin Milger1,2, Yingyan Yu1,3, Eva Brudy1
1Comprehensive Pneumology Center, Helmholtz Center Munich Germany, Member of the German Center for Lung Research (DZL), Munich, Germany.
Background:
Animal models have suggested that CCR2-dependent signalling contributes to the pathogenesis of pulmonary fibrosis, but global blockade of CCL2 failed to improve the clinical course of patients with lung fibrosis. However, as levels of CCR2+CD4+ T cells in paediatric lung fibrosis had previously been found to be increased, correlating with clinical symptoms, we hypothesised that distinct CCR2+ cell populations might either increase or decrease disease pathogenesis depending on their subtype.
Objective:
To investigate the role of CCR2+CD4+ T cells in experimental lung fibrosis and in patients with idiopathic pulmonary fibrosis and other fibrosis.
Methods:
Pulmonary CCR2+CD4+ T cells were analysed using flow cytometry and mRNA profiling, followed by in silico pathway analysis, in vitro assays and adoptive transfer experiments.
Results:
Frequencies of CCR2+CD4+ T cells were increased in experimental fibrosis-specifically the CD62L-CD44+ effector memory T cell phenotype, displaying a distinct chemokine receptor profile. mRNA profiling of isolated CCR2+CD4+ T cells from fibrotic lungs suggested immune regulatory functions, a finding that was confirmed in vitro using suppressor assays. Importantly, adoptive transfer of CCR2+CD4+ T cells attenuated fibrosis development. The results were partly corroborated in patients with lung fibrosis, by showing higher percentages of Foxp3+ CD25+ cells within bronchoalveolar lavage fluid CCR2+CD4+ T cells as compared with CCR2-CD4+ T cells.
Conclusion:
Pulmonary CCR2+CD4+ T cells are immunosuppressive, and could attenuate lung inflammation and fibrosis. Therapeutic strategies completely abrogating CCR2-dependent signalling will therefore also eliminate cell populations with protective roles in fibrotic lung disease. This emphasises the need for a detailed understanding of the functions of immune cell subsets in fibrotic lung disease.
Insights
Certain CCR2+CD4+ T cells in lung fibrosis are immunosuppressive, reducing inflammation and fibrosis. Targeting CCR2 broadly may harm these protective cells, highlighting the need for nuanced therapeutic strategies in fibrotic lung disease.
Area of Science:
- Immunology
- Pulmonary Medicine
- Cell Biology
Background:
- CCR2-dependent signaling is implicated in pulmonary fibrosis pathogenesis.
- Previous studies showed increased CCR2+CD4+ T cells in pediatric lung fibrosis, correlating with symptoms.
- Hypothesis: Distinct CCR2+ cell subtypes may differentially impact disease progression.
Purpose of the Study:
- Investigate the role of CCR2+CD4+ T cells in experimental and human lung fibrosis.
- Determine if specific CCR2+CD4+ T cell subsets have protective or detrimental effects.
Main Methods:
- Flow cytometry and mRNA profiling of pulmonary CCR2+CD4+ T cells.
- In silico pathway analysis, in vitro suppressor assays.
- Adoptive transfer experiments in fibrosis models.
Main Results:
- Increased CCR2+CD4+ T cells, particularly CD62L-CD44+ effector memory phenotype, observed in experimental fibrosis.
- Isolated CCR2+CD4+ T cells exhibited immunosuppressive functions in vitro.
- Adoptive transfer of CCR2+CD4+ T cells attenuated fibrosis development.
- Elevated Foxp3+CD25+ cells within CCR2+CD4+ T cells found in patients with lung fibrosis.
Conclusions:
- Pulmonary CCR2+CD4+ T cells possess immunosuppressive properties, potentially mitigating lung inflammation and fibrosis.
- Broadly blocking CCR2 signaling could eliminate beneficial immune cell populations.
- Detailed understanding of immune cell subset functions is crucial for fibrotic lung disease therapeutics.
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