A novel injectable polysaccharide system based on calcium Alginate (Ca-Alg) hydrogel and two Dextran methacrylate derivatives (DexMA) was recently developed. The resulting Interpenetrating Polymer Network showed a synergistic mechanical behavior that can be exploited to target the hydrogel properties towards specific biomedical needs. In the present paper, hydrogels composed of 3% (w/v) Ca-Alg and Dextran (Mw 40 x 10(4) and 500 x 10(4)), derivatized with methacrylic groups (derivatization degrees 5 and 30%) at concentrations 5% (w/v), were characterized. The data reported here evidenced that Mw and derivatization degree of Dex chains can deeply affect the mechanical as well a model protein (Horseradish peroxidase) delivery rate. The enzymatic activity of such model protein was never significantly altered by the adopted experimental conditions.

Pescosolido, L., S., M., Di Meo, C., C., C., Coviello, T., Alhaique, F., et al. (2010). Injectable and in situ gelling hydrogels for modified protein release. EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 39(6), 903-909 [10.1007/s00249-009-0440-2].

Injectable and in situ gelling hydrogels for modified protein release

ALHAIQUE, Franco;MATRICARDI, PIETRO
2010-01-01

Abstract

A novel injectable polysaccharide system based on calcium Alginate (Ca-Alg) hydrogel and two Dextran methacrylate derivatives (DexMA) was recently developed. The resulting Interpenetrating Polymer Network showed a synergistic mechanical behavior that can be exploited to target the hydrogel properties towards specific biomedical needs. In the present paper, hydrogels composed of 3% (w/v) Ca-Alg and Dextran (Mw 40 x 10(4) and 500 x 10(4)), derivatized with methacrylic groups (derivatization degrees 5 and 30%) at concentrations 5% (w/v), were characterized. The data reported here evidenced that Mw and derivatization degree of Dex chains can deeply affect the mechanical as well a model protein (Horseradish peroxidase) delivery rate. The enzymatic activity of such model protein was never significantly altered by the adopted experimental conditions.
2010
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHEM-08/A - Tecnologia, socioeconomia e normativa dei medicinali e dei prodotti per il benessere e per la salute
English
Con Impact Factor ISI
alginate
dextran derivatives
interpenetrating polymer network
protein delivery
rheology
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Pescosolido, L., S., M., Di Meo, C., C., C., Coviello, T., Alhaique, F., et al. (2010). Injectable and in situ gelling hydrogels for modified protein release. EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 39(6), 903-909 [10.1007/s00249-009-0440-2].
Pescosolido, L; S., M; Di Meo, C; C., C; Coviello, T; Alhaique, F; Matricardi, P
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/430635
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