Macrophage CCL18 promotes lung inflammation in checkpoint inhibitor pneumonitis
Mohammad I Ghanbar1,2, Andres Villabona-Rueda1,3, Nicolas Philip1
1Division of Pulmonary and Critical Care Medicine, Johns Hopkins University, Baltimore, MD, United States.
Background:
Checkpoint inhibitor pneumonitis (CIP) is a highly morbid complication of immune checkpoint immunotherapy, characterized by acute lung injury leading, in severe cases, to hypoxic respiratory failure and death. CIP incidence in lung cancer is high (10%-15%). Yet, the pathophysiology of CIP is poorly understood.
Objective/Methods:
To investigate the mechanisms underlying alveolar inflammation in patients with CIP, human bronchoalveolar lavage fluid (BALF) samples from control patients and patients with CIP were analyzed using flow cytometry, single-cell RNA sequencing (scRNA-seq), and ELISA. Findings were validated using multiple external cohorts. In vitro experiments and in vivo rodent models were employed to investigate the mechanisms driving alveolar inflammation in CIP.
Results:
Analysis of scRNA-seq and flow cytometry data demonstrated increased macrophages in patients with CIP compared to controls. Several distinct proinflammatory alveolar macrophage subsets were increased in CIP. CIP macrophages expressed increased CCL18 at the transcript (scRNA-seq), cellular (flow cytometry) and secreted protein (BALF ELISA) levels. BALF CCL18 levels were associated with clinical CIP severity. CCL18 overexpression in mice promoted lung inflammation that phenocopied human CIP, including upregulation of proinflammatory macrophage subsets.
Conclusion:
These findings suggest that BALF macrophages and CCL18 protein levels are increased in patients with CIP and associate with greater CIP severity. Additionally, CCL18 promotes lung inflammation in mice that mimics human CIP, suggesting a causal role for CCL18 in CIP.
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