Micellar solutions made of a fully fluorinated surfactant, LiPFN, form water-soluble complexes with lysozyme in a wide concentration range. Such complexes are stabilized by electrostatic and, very presumably, double-layer interactions. The mixtures were investigated by combining electrophoretic mobility, DLS, and dielectric relaxation methods. The former gives information on the surface charge density of protein-micelle complexes and indicates that the resulting adducts retain a negative charge (i.e., charge neutralization is incomplete). The double-layer thickness of proteins, micelles, and protein-micelle complexes is also connected to the dielectric relaxation frequency. Changes in particle size (inferred by DLS), charge density, and double-layer thickness are closely interrelated to each other. A model was developed to quantify such properties.

Electrostatic interactions between a protein and oppositely charged micelles / Andreozzi, Patrizia; Adalberto, Bonincontro; LA MESA, Camillo. - In: JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL. - ISSN 1520-6106. - STAMPA. - 112:11(2008), pp. 3339-3345. [10.1021/jp0742618]

Electrostatic interactions between a protein and oppositely charged micelles

ANDREOZZI, PATRIZIA;LA MESA, Camillo
2008

Abstract

Micellar solutions made of a fully fluorinated surfactant, LiPFN, form water-soluble complexes with lysozyme in a wide concentration range. Such complexes are stabilized by electrostatic and, very presumably, double-layer interactions. The mixtures were investigated by combining electrophoretic mobility, DLS, and dielectric relaxation methods. The former gives information on the surface charge density of protein-micelle complexes and indicates that the resulting adducts retain a negative charge (i.e., charge neutralization is incomplete). The double-layer thickness of proteins, micelles, and protein-micelle complexes is also connected to the dielectric relaxation frequency. Changes in particle size (inferred by DLS), charge density, and double-layer thickness are closely interrelated to each other. A model was developed to quantify such properties.
2008
electrostatic interactions; micelles; proteins
01 Pubblicazione su rivista::01a Articolo in rivista
Electrostatic interactions between a protein and oppositely charged micelles / Andreozzi, Patrizia; Adalberto, Bonincontro; LA MESA, Camillo. - In: JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL. - ISSN 1520-6106. - STAMPA. - 112:11(2008), pp. 3339-3345. [10.1021/jp0742618]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/229788
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