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Beryllium increases the CD14(dim)CD16+ subset in the lung of chronic beryllium disease
Li Li1, Nabeel Hamzeh1, May Gillespie2
1Department of Medicine, National Jewish Health, Denver, Colorado, United States of America; Division of Pulmonary and Critical Care Sciences, Department of Medicine, School of Medicine, Denver, Colorado, United States of America.
Abstract:
CD14dimCD16+ and CD14brightCD16+ cells, which compose a minor population of monocytes in human peripheral blood mononuclear cells (PBMC), have been implicated in several inflammatory diseases. The aim of this study was to investigate whether this phenotype was present as a subset of lung infiltrative alveolar macrophages (AMs) in the granulomatous lung disease, chronic beryllium disease (CBD). The monocytes subsets was determined from PBMC cells and bronchoalveolar lavage (BAL) cells from CBD, beryllium sensitized Non-smoker (BeS-NS) and healthy subjects (HS) using flow cytometry. The impact of smoking on the AMs cell phenotype was determined by using BAL cells from BeS smokers (BeS-S). In comparison with the other monocyte subpopulations, CD14dimCD16+ cells were at decreased frequency in PBMCs of both BeS-NS and CBD and showed higher HLA-DR expression, compared to HS. The AMs from CBD and BeS-NS demonstrated a CD14dimCD16+phenotype, while CD14brightCD16+ cells were found at increased frequency in AMs of BeS, compared to HS. Fresh AMs from BeS-NS and CBD demonstrated significantly greater CD16, CD40, CD86 and HLA-DR than HS and BeS-S. The expression of CD16 on AMs from both CBD and BeS-NS was downregulated significantly after 10μM BeSO4 stimulation. The phagocytic activity of AMs decreased after 10μM BeSO4 treatment in both BeS-NS and CBD, although was altered or reduced in HS and BeS-S. These results suggest that Be increases the CD14dimCD16+ subsets in the lung of CBD subjects. We speculate that Be-stimulates the compartmentalization of a more mature CD16+ macrophage phenotype and that in turn these macrophages are a source of Th1 cytokines and chemokines that perpetuate the Be immune response in CBD. The protective effect of cigarette smoking in BeS-S may be due to the low expression of co-stimulatory markers on AMs from smokers as well as the decreased phagocytic function.
Insights
Beryllium exposure in chronic beryllium disease (CBD) increases CD14dimCD16+ monocytes in the lungs, potentially driving inflammation. Smoking may offer protection by reducing co-stimulatory markers on alveolar macrophages.
Area of Science:
- Immunology
- Pulmonary Medicine
- Cell Biology
Background:
- CD14dimCD16+ and CD14brightCD16+ monocytes are implicated in inflammatory diseases.
- Alveolar macrophages (AMs) play a role in lung diseases, including chronic beryllium disease (CBD).
Purpose of the Study:
- To investigate the presence and phenotype of CD14dimCD16+ and CD14brightCD16+ cells in alveolar macrophages (AMs) of chronic beryllium disease (CBD) patients.
- To determine the impact of beryllium exposure and smoking on these monocyte subsets in lung tissues.
Main Methods:
- Flow cytometry was used to analyze monocyte subsets in peripheral blood mononuclear cells (PBMC) and bronchoalveolar lavage (BAL) cells.
- Samples were obtained from CBD patients, beryllium-sensitized non-smokers (BeS-NS), healthy subjects (HS), and beryllium-sensitized smokers (BeS-S).
- Expression of CD16, CD40, CD86, HLA-DR, and phagocytic activity were assessed after beryllium sulfate (BeSO4) stimulation.
Main Results:
- CD14dimCD16+ cells were decreased in PBMCs of BeS-NS and CBD but showed a CD14dimCD16+ phenotype in AMs of CBD and BeS-NS.
- AMs from BeS-NS and CBD exhibited higher expression of CD16, CD40, CD86, and HLA-DR compared to HS and BeS-S.
- Beryllium stimulation downregulated CD16 expression on AMs and decreased phagocytic activity in BeS-NS and CBD.
Conclusions:
- Beryllium exposure promotes the accumulation of CD14dimCD16+ subsets in the lungs of CBD subjects.
- These macrophages may contribute to the Th1-mediated immune response perpetuating CBD.
- Smoking might exert a protective effect in beryllium sensitization by reducing co-stimulatory markers and phagocytic function on AMs.
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