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基于海藻酸盐的铁磁流体及其磁性微球。

Alginate-based ferrofluid and magnetic microsphere thereof.

机构信息

College of Chemical Engineering, Wuhan University of Technology, Wuhan 430070, PR China.

出版信息

Int J Biol Macromol. 2010 Dec 1;47(5):654-60. doi: 10.1016/j.ijbiomac.2010.08.012. Epub 2010 Aug 24.

Abstract

The Fe(3)O(4) ferrofluids have been prepared using sodium alginate (Na-AL) as a stabilizing agent. The alginate can prevent the aggregation of magnetic nanoparticles and hence contributed to higher stability for the ferrofluids. Furthermore, the alginate component in the ferrofluids was crosslinked by Ca(2+) to produce magnetic microspheres. The swelling behavior of magnetic microspheres showed a pH-dependence, and hence determined the drug release process under various pH conditions. The presence of the Fe(3)O(4) nanoparticles made the magnetic microspheres swell more easily. Meanwhile, the strong ability to absorb the drug for the incorporated Fe(3)O(4) nanoparticles decreased the release rate and hence was more favorable to the sustaining release of drug. Except for the controlled delivery and release of drug, the alginate-based ferrofluids and magnetic microspheres in this work might also show a great potential for other biomedical and biotechnological applications, such as, magnetic targeting, magnetic separation and magnetic resonance imaging.

摘要

采用海藻酸钠(Na-AL)作为稳定剂制备了 Fe(3)O(4) 铁磁流体。海藻酸盐可以防止磁性纳米粒子的聚集,从而提高铁磁流体的稳定性。此外,铁磁流体中的海藻酸盐成分通过 Ca(2+) 交联生成磁性微球。磁性微球的溶胀行为表现出对 pH 的依赖性,因此决定了在各种 pH 条件下的药物释放过程。Fe(3)O(4) 纳米粒子的存在使磁性微球更容易溶胀。同时,由于所包含的 Fe(3)O(4)纳米粒子具有很强的药物吸收能力,因此降低了释放速率,更有利于药物的持续释放。除了药物的控制释放和输送外,本文制备的基于海藻酸钠的铁磁流体和磁性微球在其他生物医学和生物技术应用方面也可能具有很大的潜力,例如,磁靶向、磁性分离和磁共振成像。

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