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Highly Controlled Diffusion Drug Release from Ureasil-Poly(ethylene oxide)-Na+-Montmorillonite Hybrid Hydrogel Nanocomposites

机译:来自尿酸尿(环氧乙烷)-NA + -MONTMORILLONITE杂交水凝胶纳米复合材料的高度控制扩散药物释放

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摘要

In this work, we report the effects of incorporation of variable amounts (1-20 wt %) of sodium montmorillonite (MMT) into a siloxane-poly(ethylene oxide) hybrid hydrogel prepared by the sol-gel route. The aim was to control the nanostructural features of the nanocomposite, improve the release profile of the sodium diclofenac (SDCF) drug, and optimize the swelling behavior of the hydrophilic matrix. The nanoscopic characteristics of the siloxane-cross-linked poly(ethylene oxide) network, the semicrystallinity of the hybrid, and the intercalated or exfoliated structure of the clay were investigated by X-ray diffraction, small-angle X-ray scattering, and differential scanning calorimetry. The correlation between the nanoscopic features of nanocomposites containing different amounts of MMT and the swelling behavior revealed the key role of exfoliated silicate in controlling the water uptake by means of a flow barrier effect. The release of the drug from the nanocomposite displayed a stepped pattern kinetically controlled by the diffusion of SDCF molecules through the mass transport barrier created by the exfoliated silicate. The sustained SDCF release provided by the hybrid hydrogel nanocomposite could be useful for the prolonged treatment of painful conditions, such as arthritis, sprains and strains, gout, migraine, and pain after surgical procedures.
机译:在这项工作中,我们报告了将可变量(1-20wt%)钠蒙脱石(MMT)掺入由溶胶 - 凝胶途径制备的硅氧烷 - 聚(环氧乙烷)杂交水凝胶。目的是控制纳米复合材料的纳米结构特征,改善双氯芬酸钠(SDCF)药物的释放曲线,并优化亲水基质的溶胀行为。通过X射线衍射,小角X射线散射和差分研究硅氧烷交联聚(环氧乙烷)网络,杂交的半结晶度和粘土的嵌入或剥离结构的纳米镜特性,以及粘土的嵌入或剥离结构扫描量热法。含有不同量的MMT和溶胀行为的纳米复合材料的纳米镜分子之间的相关性揭示了剥离硅酸盐在通过流动阻挡效应控制水的关键作用。来自纳米复合材料的药物的释放显示了通过通过通过剥离硅酸盐产生的大规模运输屏障的SDCF分子的扩散来动脉控制的阶梯式图案。杂交水凝胶纳米复合材料提供的持续的SDCF释放可用于延长治疗疼痛条件,例如关节炎,扭伤和菌株,痛风,偏头痛和手术手术后的疼痛。

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