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3D graphene oxide supramolecular hybrid hydrogel with well-ordered interior microstructure prepared by a host–guest inclusion-induced self-assembly strategy

机译:3D石墨烯氧化物超分子杂种水凝胶,通过宿主纳入诱导的自组装策略制备了井有序的内部微观结构

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Here we report a novel strategy for constructing supramolecular hybrid hydrogels with regular porous structure via three-dimensional self-assembly of graphene oxide (GO) and rigid pseudopolyrotaxane (PPR) formed by low-MW linear poly(ethylene glycol) (PEG) threading a series of α-cyclodextrin (α-CD). By the strong π–π interactions between the pyrene group (Py) and GO sheets, the pyrene–poly(ethylene glycol) (Py–PEG) conjugate polymer was successfully adsorbed onto the surface of GO, forming the homogenous layered GO–Py–PEG aggregates induced by parallel arrangement of GO sheets. Subsequently, α-CD was added into GO–Py–PEG hybrids solution, and rigid necklace-like PPR supramolecular structure was formed owing to the PEG chains threading into the cavities of a series of α-CD via the well-known host–guest inclusion interaction. Soon afterwards, 3D supramolecular hydrogel with well-ordered porous structure was formed by virtue of the 3D self-assembly of GO–Py–PEG sheets induced by the strong hydrogen-bond interaction among adjacent rigid PPR. GO–Py–PEG/α-CD hydrogel shows enhanced mechanical property compared with native Py–PEG/α-CD hydrogel and also retains the shear-thinning property. The hybrid hydrogel was further utilized for loading water-soluble drug doxorubicin (DOX), and subsequently the microstructure-dependent drug delivery performance was investigated preliminarily. We believe this study will provide a new insight for designing and constructing supramolecular hydrogels to broaden their breakthrough applications.
机译:在这里,我们通过低MW线性聚(乙二醇)(乙二醇)(PEG)螺纹A形成了一种通过三维自组装构建具有常规多孔结构的共分子杂合水凝胶的新策略系列α-环糊精(α-CD)。通过芘基(Py)和去板之间的强π-π相互作用,芘 - 聚(乙二醇)(Py-PEG)缀合物聚合物成功被吸附到去的表面上,形成均匀的层状Go-Py- PEG聚集体由GO纸的并联排列引起的。随后,将α-Cd加入到Go-Py-PEG杂交溶液中,并且由于众所周知的主机,由于PEG链条穿过一系列α-CD的空腔而形成刚性项链的PPR超分子结构包含互动。之后,通过通过相邻的刚性PPR之间的强氢粘合相互作用诱导的Go-Py-PEG片的3D自组装,形成具有良好有序多孔结构的3D超分子水凝胶。与天然Py-PEG /α-CD水凝胶相比,Go-Py-PEG /α-CD水凝胶显示出增强的机械性能,并且还保留了剪切薄膜。杂合水凝胶进一步用于加载水溶性药物多柔比星(DOX),随后预先研究了微观结构依赖性药物递送性能。我们认为这项研究将为设计和构建超分子水凝胶提供新的洞察力,以扩大其突破性应用。

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