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Arrays of Hollow Out-of-Plane Microneedles for Drug Delivery

机译:空心的平面外微针用于药物输送

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Drug delivery based on MEMS technology requires an invasive interface such as microneedles, which connects the microsystem with the biological environment. Two-dimensional arrays of rigid hollow microneedles have been fabricated from single-crystal silicon using a combination of deep reactive ion etching and isotropic etching techniques. The fabricated needles are typically 200 μm long with a wide base and a channel diameter of 40 μm. The fabrication process allows creating either blunt needles or needles with sharp tips. Their shape and size make these needles extremely suitable for minimally invasive painless epidermal drug delivery. MEMS technology allows for batch fabrication and integration with complex microsystems. Fluid has been successfully injected 100 μm deep into sample tissue through arrays of microneedles. Needle breakage did not occur during this procedure. Experiments have shown that the modified Bernoulli equation is a good model for liquid flowing through the narrow microneedle lumen.
机译:基于MEMS技术的药物输送需要侵入性接口(例如微针),将微系统与生物环境连接起来。刚性中空微针的二维阵列已使用深反应离子刻蚀和各向同性刻蚀技术结合而成,由单晶硅制成。制成的针头通常长200μm,底部宽,通道直径为40μm。制造过程允许制造钝针或尖锐的针。它们的形状和大小使这些针头非常适合微创无痛表皮药物输送。 MEMS技术允许批量制造并与复杂的微系统集成。通过微针阵列已成功将流体深100μm注入样品组织中。在此过程中未发生断针。实验表明,修改后的伯努利方程对于液体流过狭窄的微针管腔是一个很好的模型。

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