Artículos de revistas
Polyelectrolytes Multilayers to Modulate Cell Adhesion: A Study of the Influence of Film Composition and Polyelectrolyte Interdigitation on the Adhesion of the A549 Cell Line
Fecha
2015-12Registro en:
Muzzio, Nicolás Eduardo; Pasquale, Miguel Angel; Gregurec, Danijela ; Diamanti, Eleftheria ; Kosutic, Marija; et al.; Polyelectrolytes Multilayers to Modulate Cell Adhesion: A Study of the Influence of Film Composition and Polyelectrolyte Interdigitation on the Adhesion of the A549 Cell Line; Wiley; Macromolecular Bioscience; 16; 4; 12-2015; 482-495
1616-5195
Autor
Muzzio, Nicolás Eduardo
Pasquale, Miguel Angel
Gregurec, Danijela
Diamanti, Eleftheria
Kosutic, Marija
Azzaroni, Omar
Moya, Sergio E.
Resumen
Polyelectrolyte multilayers (PEMs) with different polycation/polyanion pairs are fabricated by the layer-by-layer technique employing synthetic, natural, and both types of polyelectrolytes. The impact of the chemical composition of PEMs on cell adhesion is assessed by studying cell shape, spreading area, focal contacts, and cell proliferation for the A549 cell line. Cells exhibit good adhesion on PEMs containing natural polycations and poly(sodium 4-styrenesulfonate) (PSS) as polyanion, but limited adhesion is observed on PEMs fabricated from both natural polyelectrolytes. PEMs are then assembled, depositing a block of natural polyelectrolytes on top of a stiffer block with PSS as polyanion. Cell adhesion is enhanced on top of the diblock PEMs compared to purely natural PEMs. This fact could be explained by the interdigitation between polyelectrolytes from the two blocks. Diblock PEM assembly provides a simple means to tune cell adhesion on biocompatible PEMs.