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通过静电和主客体相互作用构建基于生物的水凝胶,以实现双重控制释放机制。

Building a bio-based hydrogel via electrostatic and host-guest interactions for realizing dual-controlled release mechanism.

机构信息

Department of Chemistry, College of Science, Northeast Forestry University, Harbin 150040, PR China.

Department of Chemistry, College of Science, Northeast Forestry University, Harbin 150040, PR China.

出版信息

Int J Biol Macromol. 2017 Dec;105(Pt 1):377-384. doi: 10.1016/j.ijbiomac.2017.07.049. Epub 2017 Jul 11.

Abstract

Bio-based hydrogel containing cyclodextrins (CDs) is of a promising polymer material that could display many advantages including wide availability, sustainability, biocompatibility and biodegradability, especially the inherent encapsulation ability with hydrophobic substance. To obtain these, the electrostatic and host-guest interactions were introduced and a hydrogel with three-dimensional double network structures was built. For preparing a spherical biopolymer cage, hydroxyethyl cellulose (HEC) and modified chitosan (HACC) were cross-linked by a one-pot reaction. The existence of HACC in this hydrogel provides a positive charge core to attract negative host molecule of sulfobutylether-β-cyclodextrin (SEB-β-CD). The loading amount of SEB-β-CD were determined by the method of weight increment and photometric titration, respectively, and an average content of active SEB-β-CD in our prepared hydrogel is more than 50%, much higher than the grafting of CD on biopolymers materials through chemical reaction. By the host-guest interaction, hydrophobic molecule of PP could adsorb rapidly in our prepared hydrogel and sustain-release in aqueous solution. Through ion-exchange interaction, different negative ions were studied for obtaining a control release of SEB-β-CD, which is to achieve the purpose of rapid release of hydrophobic guest molecule.

摘要

基于生物的水凝胶含有环糊精(CDs),是一种很有前途的聚合物材料,具有广泛的可用性、可持续性、生物相容性和生物降解性等优点,尤其是对疏水性物质具有固有的包封能力。为了获得这些特性,引入了静电和主客体相互作用,并构建了具有三维双重网络结构的水凝胶。为了制备球形生物聚合物笼,羟乙基纤维素(HEC)和改性壳聚糖(HACC)通过一锅反应交联。该水凝胶中 HACC 的存在为吸引负的磺丁基醚-β-环糊精(SEB-β-CD)的主体分子提供了正电荷核心。SEB-β-CD 的负载量分别通过重量增加法和分光光度滴定法确定,我们制备的水凝胶中活性 SEB-β-CD 的平均含量超过 50%,远高于通过化学反应将 CD 接枝到生物聚合物材料上的接枝量。通过主客体相互作用,疏水分子 PP 可以在我们制备的水凝胶中迅速吸附,并在水溶液中持续释放。通过离子交换相互作用,研究了不同的阴离子以获得 SEB-β-CD 的控制释放,从而实现疏水性客体分子的快速释放。

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