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Needle-free delivery of macromolecules across the skin by nanoliter-volume pulsed microjets

机译:毫微升容积的脉冲微喷射器无针在皮肤上传递大分子

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摘要

Needle-free liquid jet injectors were invented >50 years ago for the delivery of proteins and vaccines. Despite their long history, needle-free liquid jet injectors are not commonly used as a result of frequent pain and bruising. We hypothesized that pain and bruising originate from the deep penetration of the jets and can potentially be addressed by minimizing the penetration depth of jets into the skin. However, current jet injectors are not designed to maintain shallow dermal penetration depths. Using a new strategy of jet injection, pulsed microjets, we report on delivery of protein drugs into the skin without deep penetration. The high velocity (v >100 m/s) of microjets allows their entry into the skin, whereas the small jet diameters (50–100 μm) and extremely small volumes (2–15 nanoliters) limit the penetration depth (≈200 μm). In vitro experiments confirmed quantitative delivery of molecules into human skin and in vivo experiments with rats confirmed the ability of pulsed microjets to deliver therapeutic doses of insulin across the skin. Pulsed microjet injectors could be used to deliver drugs for local as well as systemic applications without using needles.
机译:50年前发明了无针液体喷射注射器,用于输送蛋白质和疫苗。尽管历史悠久,但由于经常出现疼痛和淤青,无针液体喷射注射器并不常用。我们假设疼痛和瘀伤是由喷射器的深层渗透引起的,并且可以通过最小化喷射器对皮肤的渗透深度来解决。然而,当前的射流注射器并未设计成维持浅的皮肤穿透深度。使用喷射微脉冲的新策略,我们报道了蛋白质药物在没有深层渗透的情况下进入皮肤的过程。微型喷嘴的高速度(v> 100 m / s)允许它们进入皮肤,而小的喷嘴直径(50–100μm)和极小的体积(2–15纳升)限制了穿透深度(≈200μm) 。体外实验证实了向人体皮肤中分子的定量递送,而大鼠体内实验则证实了脉冲微喷射器能够跨皮肤递送治疗剂量的胰岛素。脉冲微喷射注射器可用于在不使用针头的情况下为局部以及全身应用输送药物。

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