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Electroresponsive nanoparticles for drug delivery on demand

机译:Electroresponsive纳米药物输送对需求

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摘要

The potential of electroresponsive conducting polymer nanoparticles to be used as general drug delivery systems that allow electrically pulsed, linearly scalable, and on demand release of incorporated drugs is demonstrated. As examples, facile release from polypyrrole nanoparticles is shown for fluorescein, a highly water-soluble model compound, piroxicam, a lipophilic small molecule drug, and insulin, a large hydrophilic peptide hormone. The drug loading is about 13 wt% and release is accomplished in a few seconds by applying a weak constant current or voltage. To identify the parameters that should be finely tuned to tailor the carrier system for the release of the therapeutic molecule of interest, a systematic study of the factors that affect drug delivery is performed, using fluorescein as a model compound. The parameters studied include current, time, voltage, pH, temperature, particle concentration, and ionic strength. Results indicate that there are several degrees of freedom that can be optimized for efficient drug delivery. The ability to modulate linearly drug release from conducting polymers with the applied stimulus can be utilized to design programmable and minimally invasive drug delivery devices.
机译:electroresponsive进行的潜力聚合物纳米粒子作为药物运载系统,使电脉冲,线性扩展,需求释放注册的药物。灵巧的从聚吡咯纳米粒子释放显示荧光素,一个高度水溶性模型化合物、吡罗昔康、亲脂性的小分子药物,胰岛素,大量亲水肽激素。和释放在几秒钟完成应用弱恒定的电流或电压。确定的参数应该细调到裁缝的载体系统释放治疗感兴趣的分子,影响因素的系统研究药被执行时,使用荧光素一个模型化合物。电流、时间、电压、pH值、温度、粒子浓度和离子强度。表明有几个度自由,可以优化的有效药物交付。释放导电聚合物的应用刺激可以利用可编程设计和微创性药物输送设备。

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