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Penetration-Enhanced Ultrasharp Microneedles and Prediction on Skin Interaction for Efficient Transdermal Drug Delivery

机译:渗透增强的超锐利微针和皮肤相互作用的预测,以有效地透皮给药

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This paper presents penetration-enhanced hollow microneedles and an analysis on the biomechanical interaction between microneedles and skin tissue. The aim of this paper is to fabricate microneedles that reliably penetrate the skin tissue without using penetration enhancers or special insertion tools that were used in the previous studies. The microneedles are made of silicon and feature ultrasharp tips and side openings. The microneedle chips were experimentally tested in vivo by injection of dye markers. To further investigate the penetration, the insertion progression and the insertion force were monitored by measuring the electrical impedance between microneedles and a counter electrode on the skin. The microneedle design was also tested using a novel simulation approach and compared to other previously published microneedle designs. The purpose of this specific part of the paper was to investigate the interaction mechanisms between a microneedle and the skin tissue. This investigation is used to predict how the skin deforms upon insertion and how microneedles can be used to create a leak-free liquid delivery into the skin. The fabricated microneedles successfully penetrated dry living human skin at all the tested sites. The insertion characteristic of the microneedle was superior to an earlier presented type, and the insertion force of a single microneedle was estimated to be below 10 mN. This low insertion force represents a significant improvement to earlier reported results and potentially allows a microneedle array with hundreds of needles to be inserted into tissue by hand.$hfill$ [2007-0005]
机译:本文介绍了增强穿透力的空心微针,并分析了微针与皮肤组织之间的生物力学相互作用。本文的目的是制造能够可靠穿透皮肤组织的微针,而无需使用先前研究中使用的穿透增强剂或专用插入工具。微针由硅制成,具有尖锐的尖端和侧面开口。通过注射染料标记物在体内对微针芯片进行了实验测试。为了进一步研究穿透力,通过测量微针与皮肤上反电极之间的电阻抗来监测插入过程和插入力。还使用新颖的模拟方法对微针设计进行了测试,并将其与其他先前发布的微针设计进行了比较。本文这一特定部分的目的是研究微针与皮肤组织之间的相互作用机制。该研究用于预测皮肤在插入时如何变形,以及如何使用微针将无泄漏液体输送到皮肤中。所制造的微针在所有测试位置均成功渗透了干燥的活人皮肤。微针的插入特性优于先前提出的类型,并且单个微针的插入力估计低于10 mN。这种低插入力代表对早期报道的结果的重大改进,并潜在地允许将具有数百个针的微针阵列手动插入组织。[填充] [2007-0005]

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