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Microcapsules from diverse polyfunctional materials: synergistic interactions for a sharp response to pH changes

机译:来自不同多官能材料的微胶囊:协同相互作用,急剧反应pH变化

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In the present article, we report the preparation of microcapsules from functionalized polymers, carbon nanotubes and silver nanoparticles, which are stabilized and interconnected by a cross-linking agent. These can be conveniently used to fine tune the release of important encapsulated materials like Vitamin B2 and anticancer drugs with very little variation of pH (e.g. pH 5.4 vs. pH 5.8) in the physiological range. It was observed that even though microcapsules can be formed with acid functionalized single walled carbon nanotubes (f-SWCNTs) or polymer-silver nanoparticle combinations, better stability and responsiveness were found with a polymer-silver nanoparticle-f-SWCNT combination. Optical microscopic studies (video and still pictures) showed that the microcapsules did not break even with an appreciable amount of disturbance by mechanical means (nitrogen gas flow) or the dropwise addition of acidified buffer/water, clearly indicating that the release phenomenon was happening through the gap produced by the nanomaterials rather than the breaking of the microcapsules. HRTEM and FESEM pictures showed those gaps and the composite natures of the different nanomaterials - clearly indicating that a possible synergistic effect is responsible for the superior stability and interlinking. ICP-OES analysis reveals the pH dependent release of the drugs and in vitro studies indicated that the prepared pH responsive microcapsules could be useful for pH-triggered targeted drug delivery applications.
机译:在本文中,我们报告了从官能化聚合物,碳纳米管和银纳米颗粒的微胶囊的制备,所述碳纳米管和银纳米颗粒通过交联剂稳定并互连。这些可以方便地用于微调生理范围内的维生素B2和抗癌药物等重要的包封材料,如维生素B2和抗癌药物在生理范围内的含量的变化非常少的pH(例如pH 5.4与pH 5.8)。观察到,即使微胶囊可以用酸官能化的单壁碳纳米管(F-SWCNT)或聚合物 - 银纳米颗粒组合,也发现具有更好的稳定性和反应性,具有聚合物 - 银纳米颗粒-F-SWCNT组合。光学微观研究(视频和静止图像)表明,即使通过机械装置(氮气流量)或逐滴加入酸化缓冲液/水,微胶囊也不会破裂,清楚地表明通过的释放现象通过由纳米材料产生的间隙而不是分解微胶囊。 HRTEM和FESEM图片显示了不同纳米材料的差距和复合性质 - 显然表明可能的协同效应是对卓越的稳定性和交互来负责。 ICP-OES分析显示药物的pH依赖性释放,并且体外研究表明制备的pH响应微胶囊可用于pH-触发的靶向药物递送应用。

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