Graphical '/> Preparation of a 6-OH quaternized chitosan derivative through click reaction and its application to novel thermally induced/polyelectrolyte complex hydrogels
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Preparation of a 6-OH quaternized chitosan derivative through click reaction and its application to novel thermally induced/polyelectrolyte complex hydrogels

机译:通过点击反应制备6-OH季铵化壳聚糖衍生物及其在新型热诱导/聚电解质复合水凝胶中的应用

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Graphical abstractDisplay OmittedHighlights?6-OH quaternized chitosan (CTS-6-QAS) was designed and preparedviaclick reaction.?CTS-6-QAS showed good amphiphilicity.?CTS-6-QAS has excellent thermo-induced hydrogel formation property.?The novel thermo-induced/polyelectrolyte complex hydrogel was prepared.?The antibacterial agent TTO could be embedded in hydrogel and released from it.AbstractIn the present study, a chitosan derivative with long chain quaternary ammonium locating grafted at 6-OH (CTS-6-QAS) was designed and preparedviaa novel click reaction. The structure and thermal stability of the products of each step were determined with Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and thermogravimetric analysis (TGA). Rheological tests indicate that CTS-6-QAS possesses excellent thermally induced hydrogel formation property in the presence of β-glycerophosphate (β-GP). Based on these results, a novel thermally induced/polyelectrolyte complex CTS-6-QAS/alginate (SA)/β-GP dual-network hydrogel was designed. This controllable preparation method can avoid the disadvantages of the preparation methods for single thermo-induced hydrogels and polyelectrolyte complex hydrogels, and promote the homogeneity of the hydrogel. Porous sponges were prepared by freeze-drying the CTS-6-QASSA/β-GP hydrogels. The effects of hydrogel preparation conditions on the porous structure and swelling property of the sponges were quantitatively investigated. Tea tree oil (TTO), a natural antibacterial agent, was successfully embedded in the hydrogel due to the lipophilicity of the long chain quaternary ammonium grafted at 6-OH of chitosan. The sustained release of TTO from the hydrogel was studied.]]>
机译:<![cdata [ 图形抽象 显示省略 突出显示 设计并准备了6-OH季铵化壳聚糖(CTS-6-QAS),并通过点击反应而设计并制定了 cts-6-qas显示出良好的两亲性y。 CTS-6-QA具有优异的热诱导水凝胶形成特性。 制备新的热诱导/聚电解质复合物水凝胶。 抗菌剂TTO可以嵌入水凝胶中并从中释放。 抽象 在本研究中,一种带有长链季铵基因尼的壳聚糖衍生物设计并制备了在6-OH(CTS-6-QAS)以6-OH(CTS-6-QAS)接枝,并通过斜体>一种新颖的点击反应。用傅里叶变换红外光谱(FTIR),X射线衍射(XRD)和热重分析(TGA)测定每个步骤的产物的结构和热稳定性。流变测试表明CTS-6-QA在β-甘油磷酸盐(β-GP)存在下具有优异的热诱导的水凝胶形成性。基于这些结果,设计了一种新的热诱导/聚电解质复合CTS-6-QAS /藻酸盐(SA)/β-GP双网络水凝胶。这种可控制剂方法可以避免单个热诱导的水凝胶和聚电解质复合水凝胶制备方法的缺点,并促进水凝胶的均匀性。通过冷冻干燥CTS-6-QASSA /β-GP水凝胶制备多孔海绵。水凝胶制备条件对海绵的多孔结构和膨胀性的影响是定量的。茶树油(TTO)是一种天然抗菌剂,由于在壳聚糖6-oh的6-OH接枝的长链季铵的亲肠溶性,成功地嵌入了水凝胶中。研究了来自水凝胶的持续释放的TTO。 ]]>

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