We present the results of modelling studies aimed at the understanding of the interaction of a 7 nm sized water droplet containing a negatively charged globular protein with flat silica surfaces. We show how the droplet interaction with the surface depends on the electrostatic surface charge, and that adhesion of the droplet occurs when the surface is negatively charged as well. The key role of water and of the charge-balancing counter ions in mediating the surface-protein adhesion is highlighted. The relevance of the present results with respect to the production of bioinorganic hybrids via encapsulation of proteins inside mesoporous silica materials is discussed.

Disentangling protein–silica interactions

TABACCHI, GLORIA;FOIS, ETTORE SILVESTRO
2012-01-01

Abstract

We present the results of modelling studies aimed at the understanding of the interaction of a 7 nm sized water droplet containing a negatively charged globular protein with flat silica surfaces. We show how the droplet interaction with the surface depends on the electrostatic surface charge, and that adhesion of the droplet occurs when the surface is negatively charged as well. The key role of water and of the charge-balancing counter ions in mediating the surface-protein adhesion is highlighted. The relevance of the present results with respect to the production of bioinorganic hybrids via encapsulation of proteins inside mesoporous silica materials is discussed.
2012
interfaces, molecular dynamics, enzymes, hybrid materials, bioinorganic composites
Giussani, L.; Tabacchi, Gloria; Gianotti, E.; Coluccia, S.; Fois, ETTORE SILVESTRO
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/1743088
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