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PMID: 12742571 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

The compound DATEM inhibits respiratory syncytial virus fusion activity with epithelial cells.

Antiviral research ·Vol. 58 ·No. 2 ·2003-04-00 ·Pages 115-24

Ohki S, Liu JZ, Schaller J, Welliver RC

Abstract

The effect of diacetyltartaric acid esters of mono and diglycerides (DATEM) on fusion of respiratory syncytial virus (RSV) with HEp-2 cells was studied using the R18 fluorescence dequenching fusion assay. At DATEM concentrations less than 2.0 microg/ml, the inhibition of fusion increased with the concentration of DATEM. At 2 microg/ml of DATEM, the fusion was suppressed by 80-90%. Studies examining possible mechanism of fusion-inhibition indicated that DATEM was likely adsorbed onto lipid membranes of both viral envelope and target cell membranes. Quantitative measurements of DATEM adsorption onto membranes were also performed using lipid monolayers and vesicles. The surface pressure of lipid monolayer formed at the air/aqueous interface increased as the concentration of DATEM in the monolayer subphase increased, suggesting that DATEM was inserted into the monolayer. As the concentration of DATEM in vesicle suspensions increased, electrophoretic mobility of initially uncharged lipid vesicles also increased, reflective of increased negative charge at vesicle surfaces. These results strongly suggest that the insertion of DATEM onto membranes inhibited viral fusion. DATEM may prove to be effective in limiting the infectivity of RSV by interference with the fusion of the viral envelope with target cell membranes.

MeSH Terms
Adsorption Antiviral Agents/chemistry,pharmacology Cell Membrane/chemistry,drug effects,virology Dose-Response Relationship, Drug Epithelial Cells/drug effects,ultrastructure,virology Giant Cells/drug effects,virology Glycerides/chemistry,pharmacology Humans Membrane Fusion/drug effects Respiratory Syncytial Viruses/drug effects,physiology Tartrates/chemistry,pharmacology Transport Vesicles/drug effects,metabolism Tumor Cells, Cultured
Chemicals
Antiviral Agents Glycerides Tartrates
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ohki Shinpei
Department of Physiology and Biophysics, School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, NY 14214, USA.
Liu Jin-Zhou
Schaller Joseph
Welliver Robert C
Article Info
Journal
Antiviral research
Abbr.
Antiviral Res
ISSN
0166-3542
Published
2003-04-00
Pages
115-24
Language
English
Region
Netherlands
NLM ID
8109699
Subset
IM
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