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Effects of cross-linked structure on temperature-responsive hydrophobic interaction of poly(N-isopropylacrylamide) hydrogel-modified surfaces with steroids

机译:交联结构对聚(N-异丙基丙烯酰胺)水凝胶修饰的表面与类固醇的温度响应性疏水相互作用的影响

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Cross-linked poly(N-isopropylacrylamide) (PIPAAm) hydrogel-modified surfaces were prepared to investigate the effects of a three-dimensionally cross-linked structure of PIPAAm layers on both wettability changes and hydrophobic interactions with hydrophobic solutes in response to temperature changes. The temperature-responsive surface was prepared by polymerization of IPAAm in the presence of cross-linker on the substrates on which an azo polymerization initiator was covalently bonded. The PIPAAm hydrogel-modified surface showed temperature-responsive hydrophilic/hydrophobic surface property alterations as demonstrated by a large and discontinuous wettability changes in a range of 27-32 degrees C, a slightly lower temperature range than the phase transition temperature for soluble PIPAAm in aqueous media. This implies that the dynamic motion in response to temperature for PIPAAm segments in the modified hydrogel is restricted due to the cross-linked structure. The effect of the three-dimensional PIPAAm structure on the separation of hydrophobic steroids was investigated by high-performance liquid chromatography with an aqueous mobile phase. The retention times for steroids with different hydrophobicities were increased as the temperature was raised. Cortisone and prednisolone, those showing close hydrophobicity, were successfully separated at an elevated temperature above 25 degrees C owing to the amplified hydrophobic interaction of prednisolone compared to that of cortisone with the hydrophobic gel surfaces. The separation of relatively hydrophobic steroids was achieved even at lower temperature. The expanded network of the highly hydrated gel layer allowed the penetration of steroid molecules within the hydrogel layer which resulted in the changes in peak width. The cross-linked structure of PIPAAm hydrogels on substrates strongly influences both surface wettability changes and interaction with hydrophobic steroids in response to temperature due to the restricted dynamic motion of PIPAAm segments in the gel. [References: 24]
机译:制备交联的聚(N-异丙基丙烯酰胺)(PIPAAm)水凝胶修饰的表面,以研究PIPAAm层的三维交联结构对响应温度变化的润湿性变化以及与疏水性溶质的疏水性相互作用的影响。通过在交联剂存在下在其上共价键合有偶氮聚合引发剂的基材上进行IPAAm聚合制备温度响应性表面。 PIPAAm水凝胶改性的表面表现出温度响应性的亲水/疏水表面性质变化,如在27-32摄​​氏度范围内的大而连续的润湿性变化所证明的,该温度范围比水溶性PIPAAm在水溶液中的相变温度略低媒体。这意味着由于交联结构,限制了改性水凝胶中PIPAAm片段响应温度的动态运动。通过高效液相色谱和水相流动研究了三维PIPAAm结构对疏水类固醇分离的影响。具有不同疏水性的类固醇的保留时间随着温度的升高而增加。与强的松龙相比,可的松和强的松龙的疏水性强,与可的松与疏水性凝胶表面的疏水性相互作用相比,它们在25°C以上的高温下成功分离,具有良好的疏水性。即使在较低温度下也可以实现相对疏水性类固醇的分离。高水合凝胶层的扩展网络允许类固醇分子渗入水凝胶层内,从而导致峰宽变化。由于PIPAAm片段在凝胶中受限制的动态运动,底物上的PIPAAm水凝胶的交联结构强烈影响表面的润湿性变化以及与疏水性类固醇的相互作用,从而响应温度。 [参考:24]

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