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Wireless implantable chip with integrated nitinol-based pump for radio-controlled local drug delivery

机译:无线植入式芯片,带有集成的基于镍钛合金的泵,用于无线电控制的局部药物输送

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We demonstrate an active, implantable drug delivery device embedded with a microfluidic pump that is driven by a radio-controlled actuator for temporal drug delivery. The polyimide-packaged 10 x 10 x 2 mm(3) chip contains a micromachined pump chamber and check valves of Parylene C to force the release of the drug from a 76 mu L reservoir by wirelessly activating the actuator using external radio-frequency (RF) electromagnetic fields. The rectangular-shaped spiral-coil actuator based on nitinol, a biocompatible shape-memory alloy, is developed to perform cantilever-like actuation for pumping operation. The nitinol-coil actuator itself forms a passive 185 MHz resonant circuit that serves as a self-heat source activated via RF power transfer to enable frequency-selective actuation and pumping. Experimental wireless operation of fabricated prototypes shows successful release of test agents from the devices placed in liquid and excited by radiating tuned RF fields with an output power of 1.1 W. These tests reveal a single release volume of 219 nL, suggesting a device's capacity of similar to 350 individual ejections of drug from its reservoir. The thermal behavior of the activated device is also reported in detail. This proof-of-concept prototype validates the effectiveness of wireless RF pumping for fully controlled, long-lasting drug delivery, a key step towards enabling patient-tailored, targeted local drug delivery through highly miniaturized implants.
机译:我们演示了一种有源的,可植入的药物输送装置,该装置内嵌有微流体泵,该泵由无线电控制的执行器驱动以进行临时药物输送。聚酰亚胺包装的10 x 10 x 2 mm(3)芯片包含一个微加工的泵室和聚对二甲苯C的止回阀,以通过使用外部射频(RF)无线激活执行器来迫使药物从76μL的储存器中释放)电磁场。开发了基于镍钛诺的矩形螺旋线圈执行器,该镍钛诺是一种生物相容的形状记忆合金,可以执行类似悬臂的致动,以进行泵送操作。镍钛合金线圈执行器本身形成一个无源185 MHz谐振电路,该谐振电路用作通过RF功率传输激活的自热源,以实现频率选择性的激励和泵浦。预制原型的无线实验操作表明,从放置在液体中的设备中成功释放出测试剂,并通过辐射调谐的RF场以1.1 W的输出功率激发了测试剂。这些测试表明单个释放量为219 nL,表明该设备的容量与之相似从其储存库中最多可排出350次药物。还详细报告了激活设备的热行为。这个概念验证的原型验证了无线射频泵浦对于完全受控,持久的药物输送的有效性,这是通过高度小型化的植入物实现针对患者的针对性局部药物输送的关键一步。

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