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Augmentation of rat alveolar macrophage migration by surfactant protein
Abstract:
Since the alveolar macrophage (AM) resides in an environment made unique by the presence of pulmonary surfactant, we studied the effect of constituents of pulmonary surfactant on the migration of these cells in vitro. Whole pulmonary surfactant, surfactant phospholipids, and a delipidated preparation of surfactant consisting mainly of protein were tested for their effect on AM migration. Migration was measured in multiwell chemotaxis chambers with endotoxin-activated rat serum (EARS) as the stimulus. The delipidated surfactant material (DSM) markedly augmented the migration of rat AM. Enhancement was seen only when migration was stimulated with EARS. Augmentation of stimulated migration occurred over a wide range of protein concentrations in DSM (3.5 to 56 micrograms/ml) in a dose-dependent fashion. Rat AM that were preincubated with DSM and then tested in the chemotaxis assay without DSM showed increased migration towards EARS when compared with AM preincubated in buffer alone. The enhancing effect of DSM on AM migration was significantly diminished by heating the DSM and by enzymatic digestion with trypsin, suggesting that the active constituent in DSM was protein. Thus, it appears that proteins isolated from pulmonary surfactant augment the stimulated migration of AM via an interaction between the protein and the macrophage. Although the identity of these proteins remains to be elucidated, it is unlikely they include albumin since purified rat serum albumin in concentrations comparable to that of protein in DSM did not enhance the stimulated migration of AM. These results represent further confirmation that constituents of surfactant modulate the clearance function of AM in vitro. Thus, it is likely that surfactant plays a role in lung defense mediated by AM.
Insights
Proteins in pulmonary surfactant significantly enhance alveolar macrophage (AM) migration when stimulated. This suggests surfactant proteins play a crucial role in AM-mediated lung defense mechanisms.
Area of Science:
- Pulmonary immunology
- Cellular biology
- Biochemistry
Background:
- Alveolar macrophages (AMs) are key immune cells in the lung environment.
- Pulmonary surfactant, essential for lung function, uniquely surrounds AMs.
- The interaction between surfactant and AMs in immune response is not fully understood.
Purpose of the Study:
- To investigate the in vitro effect of pulmonary surfactant components on AM migration.
- To determine if surfactant constituents modulate AM immune functions.
Main Methods:
- Utilized multiwell chemotaxis chambers to measure AM migration.
- Tested whole pulmonary surfactant, phospholipids, and delipidated surfactant material (DSM).
- Used endotoxin-activated rat serum (EARS) as a migration stimulus.
Main Results:
- Delipidated surfactant material (DSM), rich in protein, significantly augmented AM migration.
- This enhancement was observed only under stimulated conditions (EARS) and was dose-dependent.
- Heat and trypsin treatment diminished the enhancing effect, indicating protein involvement.
Conclusions:
- Proteins within pulmonary surfactant enhance the stimulated migration of alveolar macrophages.
- Surfactant proteins likely interact with AMs to modulate their function.
- These findings suggest a role for surfactant in AM-mediated lung defense.