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A remotely operated drug delivery system with an electrolytic pump and a thermo-responsive valve

机译:具有电解泵和热响应阀的远程药物输送系统

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摘要

Implantable drug delivery devices are becoming attractive due to their abilities of targeted and controlled dose release. Currently, two important issues are functional lifetime and non-controlled drug diffusion. In this work, we present a drug delivery device combining an electrolytic pump and a thermo-responsive valve, which are both remotely controlled by an electromagnetic field (40.5 mT and 450 kHz). Our proposed device exhibits a novel operation mechanism for long-term therapeutic treatments using a solid drug in reservoir approach. Our device also prevents undesired drug liquid diffusions. When the electromagnetic field is on, the electrolysis-induced bubble drives the drug liquid towards the Poly (N-Isopropylacrylamide) (PNIPAM) valve that consists of PNIPAM and iron micro-particles. The heat generated by the iron micro-particles causes the PNIPAM to shrink, resulting in an open valve. When the electromagnetic field is turned off, the PNIPAM starts to swell. In the meantime, the bubbles are catalytically recombined into water, reducing the pressure inside the pumping chamber, which leads to the refilling of the fresh liquid from outside the device. A catalytic reformer is included, allowing more liquid refilling during the limited valve's closing time. The amount of body liquid that refills the drug reservoir can further dissolve the solid drug, forming a reproducible drug solution for the next dose. By repeatedly turning on and off the electromagnetic field, the drug dose can be cyclically released, and the exit port of the device is effectively controlled.
机译:可植入药物输送装置由于其靶向和受控剂量释放的能力而变得有吸引力。当前,两个重要问题是功能寿命和药物不受控制的扩散。在这项工作中,我们提出了一种结合了电解泵和热响应阀的药物输送装置,它们均通过电磁场(40.5 mT和450 kHz)进行远程控制。我们提出的设备展示了一种新颖的操作机制,可用于使用储药库中的固体药物进行长期治疗。我们的设备还可以防止不希望的药液扩散。当电磁场开启时,电解产生的气泡将药液推向由PNIPAM和铁微粒组成的聚(N-异丙基丙烯酰胺)(PNIPAM)阀。铁微粒产生的热量使PNIPAM收缩,从而导致阀门打开。当电磁场关闭时,PNIPAM开始膨胀。同时,气泡被催化重组为水,从而降低了泵送腔室内的压力,从而导致从设备外部重新填充新鲜液体。包括催化重整器,可在有限的阀门关闭时间内进行更多的液体补充。重新填充药物储存器的体液量可以进一步溶解固体药物,从而为下一个剂量形成可重现的药物溶液。通过反复打开和关闭电磁场,可以周期性地释放药物剂量,并且可以有效地控制设备的出口。

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