Record Display for the EPA National Library Catalog

RECORD NUMBER: 1 OF 15

OLS Field Name OLS Field Data
Main Title Cytotoxity to Alveolar Macrophages of Metal Oxides Adsorbed on Fly Ash.
Author Aranyi, Catherine ; Andres, Sandra ; Ehrlich, Richard ; Fenters, James D. ; Gardner., Donald E. ;
CORP Author IIT Research Inst., Chicago, Ill.;Health Effects Research Lab., Research Triangle Park, N.C.
Year Published 1977
Report Number EPA-68-02-0761; EPA/600/J-77/112;
Stock Number PB-278 591
Additional Subjects Fly ash ; Phagocytes ; Lung ; Toxicity ; Metals ; Immunity ; Oxides ; Immunology ; Toxicology ; Air pollution ; Particle size ; Concentration(Composition) ; In vitro analysis ; Cells(Biology) ; Reprints ; Macrophages ; Air pollution effects(Animals) ; Cytotoxicity
Holdings
Library Call Number Additional Info Location Last
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Status
NTIS  PB-278 591 Most EPA libraries have a fiche copy filed under the call number shown. Check with individual libraries about paper copy. NTIS 06/23/1988
Collation 10p
Abstract
Fly-ash particles fractionated into three size ranges (<2, 2 to 5, and 5 to 8 micrometers) and coated with various metal oxides were used to determine whether particle size and surface area are contributing factors to the in vitro toxicity of trace metals for alveolar macrophages (AM). Within a given particle type and exposure concentration, decrease in particle size resulted in decreased viability and increased phagocytosis. The toxic effect was not due to the solubilization of the test elements into the incubating medium. The percentage of lead, nickel, or manganese adsorbed on the fly-ash particles varied within a relatively narrow range and was not affected by the particle size. Since the AM were exposed to the particles on a weight-dose per cell basis, their effective exposure load to the test elements was constant irrespective of the particle size. Thus the greater toxicity of the small particles appears to be due to surface interaction between particles and AM, and toxic effect is surface-area as well as dose related.