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壳聚糖磷酸化的化学修饰:XPS、FT-IR和SEM研究

Chemical modification of chitosan by phosphorylation: an XPS, FT-IR and SEM study.

作者信息

Amaral I F, Granja P L, Barbosa M A

机构信息

INEB-Instituto de Engenharia Biomédica, Laboratório de Biomateriais, Rua do Campo Alegre, 823, 4150-180 Porto, Portugal.

出版信息

J Biomater Sci Polym Ed. 2005;16(12):1575-93. doi: 10.1163/156856205774576736.

Abstract

In the present work, the surface of chitosan membranes was modified using a phosphorylation method carried out at room temperature. Phosphorylation may be of particular interest in materials for orthopaedic applications, due to the cation-exchange properties of phosphate functionalities. Phosphate groups chelate calcium ions, thus inducing the deposition of an apatite-like layer known to improve the osteoconduction of polymer-based implants. Additionally, the negatively charged phosphate functionalities, together with the positively charged amine groups from chitosan, are expected to provide chitosan with an amphoteric character, which may be useful as a combinatorial therapeutic strategy, by simultaneously allowing the immobilization of signalling molecules like growth factors. Phosphorylation was carried out at room temperature using the H3PO4/Et3PO4/P2O5/butanol method. Surface characterization was performed by XPS, ATR-FT-IR, and SEM. Cross-sections were analyzed by SEM fitted with EDS. The phosphate content increased with the reaction time, as shown by XPS and ATR-FT-IR, a P/N atomic ratio of 0.73 being obtained after 48 h of treatment. High-resolution XPS spectra regarding C1s, O1s, N1s and P2p are discussed. The introduction of a neutralization step led to a reduction of P content, which pointed out to the presence of phosphates ionically bound to protonated amines, in addition to phosphate esters. EDS analysis of cross-sections revealed a gradual P reduction up to 50% towards the inner part of the membrane.

摘要

在本工作中,壳聚糖膜的表面采用室温下进行的磷酸化方法进行改性。由于磷酸官能团的阳离子交换特性,磷酸化在骨科应用材料中可能特别受关注。磷酸基团螯合钙离子,从而诱导类磷灰石层的沉积,已知该层可改善聚合物基植入物的骨传导性。此外,带负电荷的磷酸官能团与壳聚糖中带正电荷的胺基一起,有望赋予壳聚糖两性特性,这作为一种联合治疗策略可能是有用的,因为它能同时允许固定生长因子等信号分子。使用H3PO4/Et3PO4/P2O5/丁醇法在室温下进行磷酸化。通过XPS、ATR-FT-IR和SEM进行表面表征。用配备EDS的SEM分析横截面。如XPS和ATR-FT-IR所示,磷含量随反应时间增加,处理48小时后获得的P/N原子比为0.73。讨论了关于C1s、O1s、N1s和P2p的高分辨率XPS光谱。引入中和步骤导致P含量降低,这表明除了磷酸酯外,还存在离子键合到质子化胺上的磷酸盐。横截面的EDS分析显示,朝着膜的内部,P逐渐减少高达50%。

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