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Electroplated porous polypyrrole nanostructures patterned by colloidal lithography for drug-delivery applications

机译:用胶体光刻造影用于药物递送应用的电镀层多吡咯纳米结构

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摘要

Porous nanostructures of polypyrrole (Ppy) were fabricated using colloidal lithography and electrochemical techniques for potential applications in drug delivery. A sequential fabrication method was developed and optimized to maximize the coverage of the Ppy nanostructures and to obtain a homogeneous layer over the substrate. This was realized by masking with electrophoretically-assembled polystyrene (PS) nanospheres and then electroplating. Drug/biomolecule adsorption and the release characteristics for the porous nanostructures of Ppy were investigated using rhodamine B (Rh-B). Rh-B is an easily detectable small hydrophobic molecule that is used as a model for many drugs or biological substances. The porous Ppy nanostructures with an enhanced surface area exhibited higher Rh-B loading capacity than bulk planar films of Ppy. Moreover, tunability of surface morphology for further applications (e.g., sensing, cell adhesion) was demonstrated.
机译:使用胶体光刻和电化学技术来制造多孔元素(PPY)的多孔纳米结构,用于药物输送中的潜在应用。 开发和优化了一种顺序制造方法,以最大程度地覆盖PPY纳米结构并在基板上获得均匀层。 通过用电泳组装的聚苯乙烯(PS)纳米球并进行电镀来实现这一点。 使用Rhodamine B(RH-B)研究了PPY多孔纳米结构的药物/生物分子吸附和释放特性。 RH-B是一种易于检测的小疏水分子,用作许多药物或生物物质的模型。 与PPY的散装平面膜相比,具有增强表面积的多孔PPY纳米结构具有更高的RH-B负载能力。 此外,还展示了表面形态的可调性(例如传感,细胞粘附)。

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