Issue 4, 2011

Adsorption and spectroscopic characterization of lactoferrin on hydroxyapatite nanocrystals

Abstract

Lactoferrin (LF), a well-characterized protein of blood plasma and milk with antioxidant, cariostatic, anticarcinogenic and anti-inflammatory properties, has been adsorbed onto biomimetic hydroxyapatite (HA) nanocrystals at two different pH values (7.4 and 9.0). The interaction was herein investigated by spectroscopic, thermal and microscopic techniques. The positive electrostatic surface potential of LF at pH 7.4 allows a strong surface interaction with the slightly negative HA nanocrystals and avoids the proteinprotein interaction, leading to the formation of a coating protein monolayer. In contrast, at pH 9.0 the surface potential of LF is a mix of negative and positive zones favouring the proteinprotein interaction and reducing the interaction with HA nanocrystals; as a result a double layer of coating protein was formed. These experimental findings are supported by the good fittings of the adsorption isotherms by different theoretical models according to Langmuir, Freundlich and Langmuir–Freundlich models. The nanosized HA does not appreciably affect the conformation of the adsorbed protein. In fact, using FT-Raman and FT-IR, we found that after adsorption the protein was only slightly unfolded with a small fraction of the α-helix structure being converted into turn, while the β-sheet content remained almost unchanged. The bioactive surface of HA functionalized with LF could be utilized to improve the material performance towards the biological environment for biomedical applications.

Graphical abstract: Adsorption and spectroscopic characterization of lactoferrin on hydroxyapatite nanocrystals

Article information

Article type
Paper
Submitted
23 Jun 2010
Accepted
15 Oct 2010
First published
13 Dec 2010

Dalton Trans., 2011,40, 820-827

Adsorption and spectroscopic characterization of lactoferrin on hydroxyapatite nanocrystals

M. Iafisco, M. D. Foggia, S. Bonora, M. Prat and N. Roveri, Dalton Trans., 2011, 40, 820 DOI: 10.1039/C0DT00714E

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