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Research Article Free access | 10.1172/JCI114596

Neutrophil adherence to isolated adult canine myocytes. Evidence for a CD18-dependent mechanism.

M L Entman, K Youker, S B Shappell, C Siegel, R Rothlein, W J Dreyer, F C Schmalstieg, and C W Smith

Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Section of Cardiovascular Sciences, Methodist Hospital, Houston, Texas.

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Published May 1, 1990 - More info

Published in Volume 85, Issue 5 on May 1, 1990
J Clin Invest. 1990;85(5):1497–1506. https://doi.org/10.1172/JCI114596.
© 1990 The American Society for Clinical Investigation
Published May 1, 1990 - Version history
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Abstract

Cardiac myocytes were isolated from adult dogs and incubated with isolated canine neutrophils (PMN). Intercellular adhesion was low and unchanged by stimulation of the PMN with zymosan activated serum or platelet activating factor (PAF) at concentrations that significantly enhance PMN adhesion to protein-coated glass and canine endothelial cell monolayers. Intercellular adhesion was significantly increased only when both myocytes and PMN were stimulated (e.g., myocytes incubated with IL-1, tumor necrosis factor, or phorbol myristate acetate, and PMN were chemotactically stimulated). Inhibitors of protein synthesis diminished the IL-1 beta-induced effect by greater than 80%. The IL-1 beta, PAF-stimulated PMN-myocyte adhesion was associated with substantial H2O2 production. Under conditions with low PMN-myocyte adhesion (i.e., IL-1 beta alone, PAF alone, or no stimulus) H2O2 production was generally less than 5% of that occurring with high adhesion. An anti-CD18 monoclonal antibody (R15.7) inhibited stimulated PMN-myocyte adhesion by greater than 95% and reduced H2O2 production by greater than 90%. Control isotype-matched, binding, and nonbinding antibodies were without effect on adherence or H2O2 production. The results indicate that cytokine stimulation of adult myocytes induces expression of a ligand involved in CD18-dependent adherence of canine neutrophils.

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