4.5 Article

Nanoporous aluminum oxide affects neutrophil behaviour

Journal

MICROSCOPY RESEARCH AND TECHNIQUE
Volume 63, Issue 5, Pages 259-265

Publisher

WILEY
DOI: 10.1002/jemt.20040

Keywords

polymorphonuclear leukocytes (PMN); activation; morphology; biomaterial; surface topography

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This study evaluates neutrophil responses on aluminum oxide membranes. Using an in vitro cell culture system, we have found that the pore size (20 and 200 nm in diameter) of alumina membranes have a significant effect on leukocyte morphology and activation. Specifically, our results show that 20-nm pore-size membranes were more potent in triggering PMN spreading and extending of pseudopodia than 200-nm pore-size membranes. The morphological changes are also associated with cell activation. In fact, adherent neutrophils on 20-nm pore-size membranes elicit much stronger initial oxygen free radical production. Overall, our results point out that membrane pore size significantly affects the extent of cellular responses of adherent neutrophils. (C) 2004 Wiley-Liss, Inc.

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