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Differential regulation of membrane CD14 expression and endotoxin-tolerance in alveolar macrophages
Shu-Min Lin1, Charles W Frevert, Osamu Kajikawa
1Pulmonary Research Laboratories, VA Puget Sound Medical Center, 1660 S. Columbian Way, 151L, Seattle, WA 98108, USA.
Abstract:
CD14 is important in the clearance of bacterial pathogens from lungs. However, the mechanisms that regulate the expression of membrane CD14 (mCD14) on alveolar macrophages (AM) have not been studied in detail. This study examines the regulation of mCD14 on AM exposed to Escherichia coli in vivo and in vitro, and explores the consequences of changes in mCD14 expression. The expression of mCD14 was decreased on AM exposed to E. coli in vivo and AM incubated with lipopolysaccharide (LPS) or E. coli in vitro. Polymyxin B abolished LPS effects, but only partially blocked the effects of E. coli. Blockade of extracellular signal-regulated kinase pathways attenuated LPS and E. coli-induced decrease in mCD14 expression. Inhibition of proteases abrogated the LPS-induced decrease in mCD14 expression on AM and the release of sCD14 into the supernatants, but did not affect the response to E. coli. The production of tumor necrosis factor-alpha in response to a second challenge with Staphylococcus aureus or zymosan was decreased in AM after incubation with E. coli but not LPS. These studies show that distinct mechanisms regulate the expression of mCD14 and the induction of endotoxin tolerance in AM, and suggest that AM function is impaired at sites of bacterial infection.
Insights
Alveolar macrophages (AM) reduce membrane CD14 (mCD14) expression upon bacterial exposure via distinct pathways. This impairs AM function and immune response during lung infections.
Area of Science:
- Immunology
- Cell Biology
- Respiratory Medicine
Background:
- CD14 is crucial for clearing lung pathogens.
- Mechanisms regulating membrane CD14 (mCD14) on alveolar macrophages (AM) are not fully understood.
Purpose of the Study:
- To investigate the regulation of mCD14 on AM exposed to Escherichia coli.
- To explore the consequences of altered mCD14 expression on AM function.
Main Methods:
- In vivo and in vitro exposure of AM to E. coli and lipopolysaccharide (LPS).
- Assessment of mCD14 expression, extracellular signal-regulated kinase (ERK) pathways, and protease activity.
- Evaluation of tumor necrosis factor-alpha production following secondary challenges.
Main Results:
- E. coli and LPS decreased mCD14 expression on AM.
- ERK pathways and proteases differentially mediated these decreases.
- E. coli exposure, but not LPS, induced endotoxin tolerance and impaired TNF-alpha production.
Conclusions:
- Distinct mechanisms regulate mCD14 expression and endotoxin tolerance in AM.
- Bacterial infections can impair AM function at infection sites.
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