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Adoptive Transfer of IL-33-Stimulated Macrophages into Bleomycin-Induced Mouse Models to Study Their Effect on Idiopathic Pulmonary Fibrosis In Vivo
Published on: May 5, 2023
Pulmonary alveolar proteinosis: a bench-to-bedside story of granulocyte-macrophage colony-stimulating factor
Sara R Greenhill1, Darrell N Kotton1
1Pulmonary Center, Boston University School of Medicine, Boston, MA.
Abstract:
Pulmonary alveolar proteinosis (PAP) is a rare disorder characterized by ineffective clearance of surfactant by alveolar macrophages. Through recent studies with genetically altered mice, the etiology of this idiopathic disease is becoming clearer. Functional deficiency of granulocyte-macrophage colony-stimulating factor (GM-CSF) appears to contribute to disease pathogenesis because mutant mice deficient in GM-CSF or its receptor spontaneously develop PAP. Recent human studies further suggest a connection between PAP and defective GM-CSF activity because inactivating anti-GM-CSF autoantibodies are observed in all patients with idiopathic PAP, and additional rare cases of PAP in children have been accompanied by genetic defects in the alpha chain of the GM-CSF receptor. In patients and mouse models of PAP, deficient GM-CSF activity appears to result in defective alveolar macrophages that are unable to maintain pulmonary surfactant homeostasis and display defective phagocytic and antigen-presenting capabilities. The most recent studies also suggest that neutrophil dysfunction additionally contributes to the increased susceptibility to lung infections seen in PAP. Because the phenotypic and immunologic abnormalities of PAP in mouse models can be corrected by GM-CSF reconstituting therapies, early clinical trials are underway utilizing administration of GM-CSF to potentially treat human PAP. The development of novel treatment approaches for PAP represents a dramatic illustration in pulmonary medicine of the "bench-to-bedside" process, in which basic scientists, translational researchers, and clinicians have joined together to rapidly take advantage of the unexpected observations frequently made in the modern molecular biology research laboratory.
Insights
Pulmonary alveolar proteinosis (PAP) is a rare lung disorder caused by defective surfactant clearance. Granulocyte-macrophage colony-stimulating factor (GM-CSF) deficiency is a key factor, and GM-CSF therapy shows promise for treating PAP.
Area of Science:
- Pulmonary Medicine
- Immunology
- Genetics
Background:
- Pulmonary alveolar proteinosis (PAP) is a rare lung disease characterized by surfactant accumulation.
- The exact cause of idiopathic PAP has been unclear until recent research.
Purpose of the Study:
- To elucidate the etiology of idiopathic PAP.
- To investigate the role of granulocyte-macrophage colony-stimulating factor (GM-CSF) in PAP pathogenesis.
- To explore potential therapeutic strategies for PAP.
Main Methods:
- Studies utilizing genetically altered mice deficient in GM-CSF or its receptor.
- Analysis of human patients with idiopathic PAP, including autoantibody screening and genetic analysis of GM-CSF receptor.
- Assessment of alveolar macrophage function and neutrophil activity in PAP models and patients.
Main Results:
- GM-CSF deficiency or defective GM-CSF receptor signaling leads to spontaneous PAP development in mice.
- Inactivating anti-GM-CSF autoantibodies are present in most idiopathic PAP patients.
- Defective GM-CSF activity impairs alveolar macrophage function and contributes to lung infections in PAP.
- GM-CSF therapy corrected PAP abnormalities in mouse models.
Conclusions:
- Functional deficiency of GM-CSF is a primary driver of idiopathic PAP.
- GM-CSF replacement therapy is a promising therapeutic approach for human PAP.
- PAP research exemplifies a successful
- bench-to-bedside
- translational medicine pathway.
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