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Self-folding hydrogel bilayer for enhanced drug loading, encapsulation, and transport

机译:自折叠水凝胶双层,可增强药物的装载,封装和运输

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Hydrogel-based robotic microdevices are currently investigated for minimally invasive medical procedures. Hydrogels are especially suited to targeted drug delivery applications as they are able to carry several times more drug solution than its dry weight. A major drawback of these system is that drug release takes place before reaching the targeted area in the body. We introduce a strategy based on a self-folding bilayer to prevent release during transportation without hindering the drug loading efficiency of the hydrogel. The drug is loaded into the hydrogel matrix at room temperature. When the temperature is increased to body temperature, the hydrogel-matrix collapses and the self-folded bilayer refolds into another tube. In this configuration, we observed a significant reduction in drug leakage with less than 5% drug loss during encapsulation. Finally, we demonstrate that the tube can be manipulated magnetically, which shows its potential use in targeted drug delivery applications.
机译:目前正在研究基于水凝胶的机器人微型设备的微创医疗程序。水凝胶特别适合有针对性的药物输送应用,因为它们能够承载的药物溶液比其干重高出几倍。这些系统的主要缺点是药物释放是在到达体内目标区域之前发生的。我们引入一种基于自折叠双层的策略,以防止在运输过程中释放而不会影响水凝胶的载药效率。在室温下将药物加载到水凝胶基质中。当温度升高至体温时,水凝胶基质塌陷,自折叠双层重新折叠成另一管。在这种配置下,我们观察到封装过程中药物泄漏的显着减少,且药物损失少于5%。最后,我们证明了该管可以进行磁力操作,这表明了其在靶向药物输送应用中的潜在用途。

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