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首页> 外文期刊>European Polymer Journal >Poly(aspartic acid) hydrogels showing reversible volume change upon redox stimulus
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Poly(aspartic acid) hydrogels showing reversible volume change upon redox stimulus

机译:聚(天冬氨酸)水凝胶显示氧化还原刺激时可逆体积的变化

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Redox and pH responsive hydrogels were synthesized, which can serve as matrices for smart drug delivery systems exploiting the redox and pH gradients in the human body. Water soluble thiolated poly(aspartic acid), a biocompatible synthetic polymer, enables us to cross-link in water with a non-cleavable cross-linker, poly(ethylene glycol) diglycidyl ether. The permanent cross-linker establishes stable polymer hydrogels regardless of the redox environment, thus the gels swell but do not dissolve upon redox stimuli. The reversible response upon redox stimulus was induced by thiol-disulphide transformation inside the hydrogel. The degree of swelling and the stiffness of the macroscopic hydrogels were controlled by their chemical composition including thiol content and cross-linking ratio as well as the redox state of the hydrogels. The degree of swelling of the hydrogels showed strong pH dependence due to the polyelectrolyte nature of the polymer network. Release of a macromolecular model drug was considerably faster in reducing than in oxidising environment, which indicates the potential use of the synthesized hydrogels as redox responsive drug delivery systems. Nanogels were prepared in water-in-oil emulsion and displayed redox-responsive properties. The hydrodynamic diameter of the nanogels strongly increased upon the cleavage of the disulphide linkages in reducing solution without the disruption of the gels.
机译:合成氧化还原和pH浓度水凝胶,其可以用作智能药物递送系统的基质,用于利用人体中的氧化还原和pH梯度。水溶性硫醇化聚(天冬氨酸),一种生物相容性合成聚合物,使我们能够用不可切割的交联剂,聚(乙二醇)二缩水甘油醚在水中交联。永久交联剂,无论氧化还原环境如何,凝胶均匀地建立稳定的聚合物水凝胶,因此凝胶溶胀但不溶于氧化还原刺激。通过水凝胶内的硫醇二硫化物转化诱导氧化还原刺激的可逆反应。肿胀程度和宏观水凝胶的刚度是通过其化学组成的控制,包括硫醇含量和交联比以及水凝胶的氧化还原状态。由于聚合物网络的聚电解质性质,水凝胶的溶胀程度显示出强烈的pH依赖性。减少大分子模型药物的释放比在氧化环境中更快地更快,这表明潜在使用合成的水凝胶作为氧化还原响应药物递送系统。在油内乳液中制备纳米粒并显示氧化还原响应性。在减少溶液中的二硫键的切割时,纳米凝胶的流体动力直径强烈增加,而不会破坏凝胶。

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