首页> 外文期刊>Journal of Polymer Research >Stimuli-induced gel-sol transition of supramolecular hydrogels based on β-cyclodextrin polymer/ferrocene-containing triblock copolymer inclusion complexes
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Stimuli-induced gel-sol transition of supramolecular hydrogels based on β-cyclodextrin polymer/ferrocene-containing triblock copolymer inclusion complexes

机译:基于β-环糊精聚合物/二茂铁的三嵌段共聚物包合物的超分子水凝胶的凝胶诱导的溶胶-跃迁

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摘要

A novel kind of host-guest hydrogel possessing gel-sol phase transformation in response to temperature, oxidizing agent and glucose was prepared by ferrocene (Fc)- containing pluronic F127 and β-cyclodextrin (β-CD) linear polymer, which was synthesized in aqueous alkali by using native β-CD and epichlorohydrin in the presence of toluene. Because of the reversible association-dissociation of Fc-β- CD inclusions and F127 micelles, the gel-sol transition was easily observed. Two-dimension nuclear overhauser effect spectroscopy (2D NOESY), nuclear magnetic resonance (NMR), TEM (transmission electron microscopy) and TGA (thermogravimetric analysis) measurements were used to clarify the inclusion complexes of Fc-β-CD. The results showed that the formation of inclusion complexes affected the micelle size and stabilized the hydrogels. The rheological properties of solution and hydrogels were measured. The viscosity of hydrogel was enhanced markedly, to about 90 times higher than that of Fc-F127-Fc solution at the same concentration. Due to the coactions of PPO aggregation and Fc-β-CD inclusion, the gelation temperature of hydrogel was lower than that of Fc-F127-Fc solution. The reversible gel-sol transition and multi-sensitive supramolecular hydrogels may potentially be used in injectable hydrogel for drug delivery.
机译:含二茂铁(Fc)的普朗尼克F127和β-环糊精(β-CD)线性聚合物制备了一种新型的客-客水凝胶,其具有响应温度,氧化剂和葡萄糖的凝胶-溶胶相变。在甲苯存在下,通过使用天然β-CD和表氯醇制备碱水溶液。由于Fc-β-CD包裹体和F127胶束的可逆缔合-解离,很容易观察到凝胶-溶胶转变。使用二维核超负荷效应谱(2D NOESY),核磁共振(NMR),TEM(透射电子显微镜)和TGA(热重分析)测量来阐明Fc-β-CD的包合物。结果表明,包合物的形成影响胶束的大小并稳定了水凝胶。测量溶液和水凝胶的流变性。在相同浓度下,水凝胶的粘度显着提高,比Fc-F127-Fc溶液高约90倍。由于PPO聚集和Fc-β-CD夹杂的相互作用,水凝胶的凝胶化温度低于Fc-F127-Fc溶液的凝胶化温度。可逆的凝胶-溶胶转变和多敏感性超分子水凝胶可潜在地用于可注射的水凝胶中以用于药物递送。

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