Mechanics of Cellular Adhesion to Artificial Artery Templates

We are using polymer templates to grow artificial artery grafts in vivo for the replacement of diseased blood vessels. We have previously shown that adhesion of macrophages to the template starts the graft formation. We present a study of the mechanics of macrophage adhesion to these templates on a...

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Veröffentlicht in:Biophysical journal 2006-10, Vol.91 (8), p.3085-3096
Hauptverfasser: Knöner, Gregor, Rolfe, Barbara E., Campbell, Julie H., Parkin, Simon J., Heckenberg, Norman R., Rubinsztein-Dunlop, Halina
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Sprache:eng
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Zusammenfassung:We are using polymer templates to grow artificial artery grafts in vivo for the replacement of diseased blood vessels. We have previously shown that adhesion of macrophages to the template starts the graft formation. We present a study of the mechanics of macrophage adhesion to these templates on a single cell and single bond level with optical tweezers. For whole cells, in vitro cell adhesion densities decreased significantly from polymer templates polyethylene to silicone to Tygon (167, 135, and 65cells/mm2). These cell densities were correlated with the graft formation success rate (50%, 25%, and 0%). Single-bond rupture forces at a loading rate of 450 pN/s were quantified by adhesion of trapped 2-μm spheres to macrophages. Rupture force distributions were dominated by nonspecific adhesion (forces
ISSN:0006-3495
1542-0086
DOI:10.1529/biophysj.105.076125