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

机译:通过静电和托管式相互作用构建生物基水凝胶,实现双控释放机制

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摘要

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-beta-cyclodextrin (SEB-beta-CD). The loading amount of SEB-beta-CD were determined by the method of weight increment and photometric titration, respectively, and an average content of active SEB-beta-CDin our prepared hydro gel 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-beta-CD, which is to achieve the purpose of rapid release of hydrophobic guest molecule. (c) 2017 Elsevier B.V. All rights reserved.
机译:含有环糊精(CDS)的生物基水凝胶是有希望的聚合物材料,可以显示出许多优点,包括宽可用性,可持续性,生物相容性和生物降解性,尤其是具有疏水性物质的固有的包封能力。为了获得这些,引入了静电和宿主 - 访客交互,并建立了具有三维双网络结构的水凝胶。为了制备球形生物聚合物笼,通过单罐反应交联羟乙基纤维素(HEC)和改性壳聚糖(HACC)。该水凝胶中HACC的存在提供正电荷核心以吸食磺基磺酰醚β-环糊精(SEB-BETA-CD)的负宿主分子。通过重量增量和光度滴定法测定SEB-Beta-Cd的加载量,并且活性SEB-β-CDIN的平均含量我们制备的水凝胶大于50%,远高于嫁接通过化学反应对生物聚合物材料的CD。通过宿主 - 客户相互作用,PP的疏水分子可以在我们制备的水凝胶中迅速吸附,并在水溶液中停留释放。通过离子交换相互作用,研究了不同的负离子以获得SEB-β-CD的控制释放,这是达到快速释放疏水性访客分子的目的。 (c)2017年Elsevier B.V.保留所有权利。

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