4.7 Article

Synthesis of positively charged calcium hydroxyapatite nano-crystals and their adsorption behavior of proteins

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COLLOIDS AND SURFACES B-BIOINTERFACES
卷 73, 期 1, 页码 140-145

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.colsurfb.2009.05.011

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Calcium hydroxyapatite; Nano-crystals; Positive charge; Protein adsorption

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Positively charged Hap nano-crystals were prepared by using P-alanine and clarified the adsorption affinity of these surface amide functionalized Hap nano-crystals to proteins. Colloidal surface amide functionalized Hap nano-crystals were prepared by wet method in the presence of various amounts of beta-alanine by changing molar ratio of beta-alanine/Ca (beta/Ca ratio) in the solution. The rod-like nano-crystals were lengthened with addition of beta-alanine though their width did not vary; carboxyl groups of P-alanine are strongly coordinated to Ca(2+) ions exposed on ac and/or bc faces to inhibit particle growth to a- and/or b-axis directions and enhance the particle growth along to the c-axis. No difference can be recognized on the crystal structure among the synthesized Hap nano-crystals by XRD measurements. However, the large difference was recognized by TG-DTA and FTIR measurements. Those measurements revealed that R-alanine is incorporated on the Hap nano-crystal surface up to the beta/Ca ratio of 1.0, though they are absent in the nano-crystals synthesized at beta/Ca ratio >= 2.0. The zeta potential (zp) of beta-alanine-Hap nano-crystals prepared at beta/Ca = 0.4 and 1.0 of those incorporating beta-alanine exhibited positive charge at pH <= 5.9. The saturated amounts of adsorbed BSA for the positively charged beta-alanine-Hap nano-crystals were increased 2.3-2.4-fold by their electrostatic attraction force between positively charged beta-alanine-Hap nano-crystals and negatively charged BSA molecules. We were able to control the adsorption affinity of Hap nano-crystal by changing their surface charge. (C) 2009 Elsevier B.V. All rights reserved.

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