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Harvesting Murine Alveolar Macrophages and Evaluating Cellular Activation Induced by Polyanhydride Nanoparticles
Published on: June 8, 2012
Isolation and partial characterization of a human alveolar macrophage-derived neutrophil-activating factor
Abstract:
Human alveolar macrophages (AM) were obtained from eight normal volunteers using fiberoptic bronchoscopic lavage to explore potential interrelationships among leukocytes in pulmonary defense against infection. AM placed in monolayer tissue cultures released material into culture supernatants with the capacity to enhance the bactericidal capacity of human neutrophils. Neutrophils preexposed to supernatants killed Pseudomonas aeruginosa from 70 to 90% more efficiently than control cells (P less than 0.02). AM culture supernatants contained this material by 4 h of incubation, and in vitro stimulation of AM cultures with heat-killed P. aeruginosa further increased its production. Gel filtration of AM culture supernatants with a G-50 Sephadex column allowed isolation of a 6,000-D neutrophil-activating factor (NAF) that was resistant to heat (56 degrees C, 30 min). The isoelectric point of NAF, as determined by chromatofocusing, was approximately 7.6. Enzyme digestion of NAF specimens, prepared sequentially by gel filtration and chromatofocusing, demonstrated 50-70% loss of activity after incubations with trypsin, chymotrypsin, and neuraminidase. NAF was only minimally chemotactic and eluted from Sephadex G-50 with particles of a different molecular size than those of AM-derived chemotactic factors (i.e., approximately 10,000 D and less than 500 D). Preincubation of neutrophils with NAF resulted in greater release of superoxide anion upon their subsequent stimulation by either bacterial phagocytosis or by phorbol myristate acetate, as compared with control neutrophils stimulated in a like manner. These studies indicate that human AM secrete a heat-stable, low molecular weight basic protein, with the capacity to enhance oxidative microbicidal activity of neutrophils.
Insights
Human alveolar macrophages release a neutrophil-activating factor (NAF) that enhances bacterial killing by neutrophils. This protein boosts neutrophil oxidative activity, improving pulmonary defense against infection.
Area of Science:
- Immunology
- Pulmonary Medicine
- Cell Biology
Background:
- Leukocytes, including alveolar macrophages (AM) and neutrophils, are crucial for pulmonary defense against infection.
- Understanding the interactions between these cells is vital for developing strategies to combat respiratory pathogens.
Purpose of the Study:
- To investigate the potential interrelationships among leukocytes in pulmonary defense.
- To identify and characterize factors released by human AM that modulate neutrophil function.
Main Methods:
- Human AM were cultured, and their supernatants were analyzed for effects on neutrophil bactericidal capacity.
- Neutrophil-activating factor (NAF) was isolated using gel filtration and chromatofocusing.
- NAF's properties (heat resistance, molecular weight, isoelectric point) and enzymatic susceptibility were determined.
- Neutrophil superoxide anion release was measured after NAF preincubation.
Main Results:
- AM culture supernatants significantly enhanced neutrophil killing of Pseudomonas aeruginosa.
- A heat-stable, 6,000-D neutrophil-activating factor (NAF) with an isoelectric point of ~7.6 was isolated.
- NAF activity was reduced by trypsin, chymotrypsin, and neuraminidase, indicating a protein nature.
- NAF preincubation increased neutrophil superoxide anion release upon stimulation.
Conclusions:
- Human AM secrete a basic protein (NAF) that enhances neutrophil oxidative microbicidal activity.
- NAF plays a role in augmenting the innate immune response within the lungs.
- This finding provides insights into macrophage-neutrophil interactions in host defense against bacterial infections.

