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Novel extrusion system for the encapsulation of drug releasing bio-medical micro-robots

机译:新型挤出系统,用于封装释放药物的生物医学微型机器人

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This paper examines the design and testing of a novel extrusion system for the biocompatible coating of drug delivering micro-robots. The encapsulation system creates monodisperse droplets of sodium alginate containing the micro-robots within a coaxial laminar flow of a continuous oil phase. The extrusion process allows the experimenter to control the size of the drug carrying droplets which have been subsequently tested as vehicles to deliver a model drug (Horseradish peroxidase). Comparison with other coating techniques such as dip-coating shows significant increase in the drug storing capacity. A demonstration of the use of ultrasound as a possible trigger of the drug release has also been presented. The significant increase in the observed drug release rate shows enhancement over previously tested passive diffusion and magnetic modulation methods. Together, these two aspects of micro-robotic drug delivery concept introduce a new approach to drug-delivering micro-robots with large drug-storage capacity, ability to propel the robots using magnetic forces, and trigger the drug-release by remote application of ultrasonic stimulation.
机译:本文研究了一种新型的挤出系统的设计和测试,该系统用于药物输送微型机器人的生物相容性涂层。包封系统在连续油相的同轴层流中产生包含微机器人的海藻酸钠单分散液滴。挤出过程使实验人员可以控制载药液滴的大小,这些液滴随后已作为载体输送来传递模型药物(辣根过氧化物酶)。与其他涂层技术(例如浸涂)的比较表明,药物存储能力显着提高。还展示了使用超声波作为药物释放的可能触发因素的演示。观察到的药物释放速率的显着提高表明,与先前测试的被动扩散和磁调制方法相比,其增强了。微型机器人药物输送概念的这两个方面共同介绍了一种新方法,该方法可用于输送具有大型药物存储能力,能够利用磁力推动机器人并通过远程应用超声波来触发药物释放的微型机器人刺激。

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