Two different glasses, one biocompatible but with a low bioactivity index (G1) and the other with an higher bioactivity index (G2), the ceramic version of the second glass and a titanium alloy (Ti6Al4V) have been functionalizated by anchoring alkaline phosphatase (ALP) on their surfaces. The enzyme has been chosen because it is involved in mineralization processes of hard tissues and is a model for more complex ones. ALP has been grafted on glasses and glass-ceramics surfaces both with and without samples silanization and on metallic surfaces with and without tresyl chloride activation. Samples have been analyzed at each step of the functionalization process in order to verify it .

Surface Functionalisation of biomaterials with alkaline phosphatase / Verne', Enrica; Ferraris, Sara; VITALE BROVARONE, Chiara; Spriano, Silvia Maria; Bianchi, C; Morra, M; Cassinelli, C.. - 361-363:(2008), pp. 593-596. (Intervento presentato al convegno Bioceramics 20).

Surface Functionalisation of biomaterials with alkaline phosphatase

VERNE', Enrica;FERRARIS, SARA;VITALE BROVARONE, CHIARA;SPRIANO, Silvia Maria;
2008

Abstract

Two different glasses, one biocompatible but with a low bioactivity index (G1) and the other with an higher bioactivity index (G2), the ceramic version of the second glass and a titanium alloy (Ti6Al4V) have been functionalizated by anchoring alkaline phosphatase (ALP) on their surfaces. The enzyme has been chosen because it is involved in mineralization processes of hard tissues and is a model for more complex ones. ALP has been grafted on glasses and glass-ceramics surfaces both with and without samples silanization and on metallic surfaces with and without tresyl chloride activation. Samples have been analyzed at each step of the functionalization process in order to verify it .
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/1652119
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