Suppression of alveolar macrophage membrane-receptor-mediated phagocytosis by model particle-adsorbate complexes: physicochemical moderators of uptake.
- 1 November 1990
- journal article
- Published by Environmental Health Perspectives in Environmental Health Perspectives
- Vol. 89, 169-174
- https://doi.org/10.1289/ehp.9089169
Abstract
In order to assess the abilities of alveolar macrophages (AMs) to phagocytize adsorbent-adsorbate complexes, rat AMs were incubated in vitro with two carbon blacks that have 15-fold differences in specific surface areas (ASTM classification N339 less than Black Pearls 2000) sorbed with 0.5 and 1.0 monolayer coverages of a polar and semi-polar adsorbate (acrolein and benzofuran, respectively). One-half monolayer coverages of N339 with either adsorbates significantly suppressed the phagocytosis of the carbon black, whereas one monolayer coverage did not. Neither adsorbate at either coverages affected the phagocytosis of Black Pearls 2000. The capacity of macrophages to phagocytize a subsequent particle challenge via the Fc-membrane receptor was quantified following treatment of the macrophages with the carbon black-adsorbate complexes. Treatment of the macrophages with carbon black N339-adsorbates complexes at both coverages impaired Fc-receptor-mediated phagocytosis, whereas no effect was observed when the carbon black was Black Pearls 2000. The results of this study indicate that the surface properties of the particles, the chemical properties of the chemical pollutants, and the interactions between particles and pollutants play a major role in defining the biological effect of particle-pollutant complexes.Keywords
This publication has 17 references indexed in Scilit:
- Suppression of alveolar macrophage membrane receptor-mediated phagocytosis by model and actual particle-adsorbate complexes. Initial contact with the alveolar macrophage membrane.Environmental Health Perspectives, 1990
- Chromatographic modeling of the release of particle-adsorbed molecules into synthetic alveolar surfactant.Environmental Health Perspectives, 1988
- A model for the release of adsorbed molecules from the surfaces of airborne particulate matter based on liquid-phase desorption from amorphous carbon blacks.Environmental Health Perspectives, 1988
- A model for the formation of airborne particulate matter based on the gas-phase adsorption on amorphous carbon blacks.Environmental Health Perspectives, 1988
- Secretory products of macrophages.Journal of Clinical Investigation, 1987
- The Respiratory Health of Carbon Black WorkersArchives of environmental health, 1986
- ALVEOLAR MACROPHAGES: ANTIGEN PRESENTATION ACTIVITY IN VIVOImmunology & Cell Biology, 1985
- Submicron carbon dust in the guinea pig lungEnvironmental Research, 1982
- Carbon as a Carrier Mechanism for Irritant GasesArchives of environmental health, 1964
- Physiological Effects of Carbon BlackArchives of environmental health, 1962