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Wirelessly controlled, bioresorbable drug delivery device with active valves that exploit electrochemically triggered crevice corrosion

机译:无线控制,可生物可吸收的药物输送装置,具有电化学触发的缝隙腐蚀的活性阀

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Implantable drug release platforms that offer wirelessly programmable control over pharmacokinetics have potential in advanced treatment protocols for hormone imbalances, malignant cancers, diabetic conditions, and others. We present a system with this type of functionality in which the constituent materials undergo complete bioresorption to eliminate device load from the patient after completing the final stage of the release process. Here, bioresorbable polyanhydride reservoirs store drugs in defined reservoirs without leakage until wirelessly triggered valve structures open to allow release. These valves operate through an electrochemical mechanism of geometrically accelerated corrosion induced by passage of electrical current from a wireless, bioresorbable power-harvesting unit. Evaluations in cell cultures demonstrate the efficacy of this technology for the treatment of cancerous tissues by release of the drug doxorubicin. Complete in vivo studies of platforms with multiple, independently controlled release events in live-animal models illustrate capabilities for control of blood glucose levels by timed delivery of insulin.
机译:提供对药代动力学的无线可编程控制的植入药物释放平台具有激素失衡,恶性癌症,糖尿病条件等的先进治疗方案。我们提出了一种具有这种类型的系统,其中组成材料在完成释放过程的最终阶段之后从患者中消除从患者的装置负荷。这里,生物可吸收多烷酸酐储存器在明确的储存器中储存药物,而不会泄漏,直到无线触发的阀门结构打开以允许释放。这些阀通过通过来自无线的电流通过来自无线的电流引起的几何加速腐蚀的电化学机理来操作。细胞培养物的评估证明了通过释放药物多柔比星来治疗癌组织的疗效。在活动物模型中完成对具有多种独立控制的释放事件的平台的体内研究说明了通过定时递送胰岛素来控制血糖水平的能力。

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