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A Miniature Shock Wave Driven Micro-Jet Injector for Needle-Free Vaccine/Drug Delivery

机译:微型冲击波驱动的微型喷射注射器,用于无针疫苗/药物输送

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This article presents a miniature shock wave driven micro-jet generator to deliver liquid drugs into human skin, to a controlled depth, with minimal invasion. The device can release the vaccine/drug to the depth of dermal blood vessels, without breaching much of the microcirculation system of dermis. The drug delivery technique is needle-free, which can reduce pain, trauma, and contamination besides minimal dosage and systemic exposure. The device can also be used to deliver liquid or colloidal drugs into soft tissues in human. The mechanical analyses of the device were carried out by analyzing the strength of the impulse of the shock wave, measuring the velocity of the generated jet and capturing the pressure exerted by the jet on the target. The penetrating ability of the jet was investigated by delivering it into sample of human skin and gelatin slabs. Theoretical analyses were carried out on the physics of the delivery and the predicted results had a close agreement with the experimental observations. The development can offer an important cost-effective solution to needle-free health care worldwide. (C) 2016 Wiley Periodicals, Inc.
机译:本文介绍了一种微型冲击波驱动的微射流发生器,该发生器可以将液体药物输送到人的皮肤中,达到可控制的深度,并且侵袭最小。该装置可以将疫苗/药物释放到真皮血管的深处,而不会破坏真皮的微循环系统。药物输送技术是无针的,除了最小的剂量和全身暴露外,还可以减轻疼痛,创伤和污染。该设备还可用于将液体或胶体药物输送到人体的软组织中。通过分析冲击波的脉冲强度,测量产生的射流的速度并捕获由射流施加在目标上的压力来进行设备的机械分析。通过将射流送入人体皮肤和明胶板样品中来研究其穿透能力。对交付物的物理特性进行了理论分析,预测结果与实验观察结果非常吻合。该开发可以为全球无针保健提供重要的成本效益解决方案。 (C)2016威利期刊公司

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