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Dynamic control of needle-free jet injection

机译:动态控制无针喷射

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摘要

Many modern pharmaceutical therapies such as vaccines and macromolecular drugs benefit from transdermal delivery. Conventional transdermal drug delivery via hypodermic needles causes pain, noncompliance, and potential contamination. Alternative transdermal strategies that deliver drugs in a quick, reliable, painless, and inexpensive way are needed. jet injectors, which deliver drugs through the skin using a high-speed stream of liquid propelled by compressed springs or gasses, provide a needle-free method of trandermal drug delivery. However, poor reliability as well as painful bruising and bleeding characterize these devices, due in part to the high and constant jet velocity with which drugs are delivered. Toward improved reliability and reduced pain, we have developed a jet injector capable of dynamic control of jet velocity during a single injection pulse. Using this device, we demonstrate that temporal control of jet velocity leads to independent control of penetration depth, by adjusting time at high velocity, and delivered dose, by adjusting time at low velocity, in model materials. This dynamic control of jet velocity creates the potential for better control of needle-free injections, as demonstrated through injection studies on whole ex vivo human skin samples.
机译:许多现代药物疗法,例如疫苗和大分子药物,都受益于透皮给药。经由皮下注射针头的常规透皮药物递送引起疼痛,不合规和潜在的污染。需要以快速,可靠,无痛且廉价的方式递送药物的替代透皮策略。喷射注射器利用压缩弹簧或气体推动的高速液体流通过皮肤输送药物,提供了一种无针刺的经皮药物输送方法。但是,这些设备的特点是可靠性差,痛苦的瘀伤和出血,部分原因是药物输送的射流速度高且恒定。为了提高可靠性并减少痛苦,我们开发了一种喷射器,能够在单个喷射脉冲期间动态控制喷射速度。使用该设备,我们证明了在模型材料中,通过控制高速时的时间来控制射流速度,并通过控制低速时的时间来控制射入深度,并通过以低速时的时间来控制射入剂量。射流速度的动态控制为更好地控制无针注射提供了潜力,正如通过对整个离体人体皮肤样品进行注射研究所证明的。

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