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可降解和导电多糖水凝胶的简易合成。

Facile synthesis of degradable and electrically conductive polysaccharide hydrogels.

机构信息

Department of Fibre and Polymer Technology, School of Chemical Science and Engineering, Royal Institute of Technology, SE-100 44, Stockholm, Sweden.

出版信息

Biomacromolecules. 2011 Jul 11;12(7):2601-9. doi: 10.1021/bm200389t. Epub 2011 May 24.

Abstract

Degradable and electrically conductive polysaccharide hydrogels (DECPHs) have been synthesized by functionalizing polysaccharide with conductive aniline oligomers. DECPHs based on chitosan (CS), aniline tetramer (AT), and glutaraldehyde were obtained by a facile one-pot reaction by using the amine group of CS and AT under mild conditions, which avoids the multistep reactions and tedious purification involved in the synthesis of degradable conductive hydrogels in our previous work. Interestingly, these one-pot hydrogels possess good film-forming properties, electrical conductivity, and a pH-sensitive swelling behavior. The chemical structure and morphology before and after swelling of the hydrogels were verified by FT-IR, NMR, and SEM. The conductivity of the hydrogels was tuned by adjusting the content of AT. The swelling ratio of the hydrogels was altered by the content of tetraaniline and cross-linker. The hydrogels underwent slow degradation in a buffer solution. The hydrogels obtained by this facile approach provide new possibilities in biomedical applications, for example, biodegradable conductive hydrogels, films, and scaffolds for cardiovascular tissue engineering and controlled drug delivery.

摘要

可降解导电多糖水凝胶(DECPHs)是通过在多糖上功能化导电苯胺低聚物合成的。通过在温和条件下使用 CS 的胺基和 AT,用简单的一锅反应获得了基于壳聚糖(CS)、四聚苯胺(AT)和戊二醛的 DECPHs,这避免了我们之前工作中合成可降解导电水凝胶所涉及的多步反应和繁琐的纯化过程。有趣的是,这些一锅法水凝胶具有良好的成膜性能、导电性和 pH 敏感的溶胀行为。通过 FT-IR、NMR 和 SEM 验证了水凝胶溶胀前后的化学结构和形态。通过调整 AT 的含量来调节水凝胶的电导率。水凝胶的溶胀比通过四苯胺和交联剂的含量来改变。水凝胶在缓冲溶液中缓慢降解。通过这种简单方法获得的水凝胶为生物医学应用提供了新的可能性,例如,可生物降解的导电水凝胶、薄膜和支架,用于心血管组织工程和控制药物释放。

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