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A Systematic Approach to fabricate High Aspect Ratio Silicon Micro-needles for Transdermal Drug Delivery

机译:制造透皮药物递送的高纵横比硅微针的系统方法

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The successful development of micro-needles can help transport drugs and vaccines both effectively and painlessly across the skin. However, not all micro-needles are strong enough to withstand the insertion forces and viscoelasticity of the skin. The work here focuses on the micro-fabrication of high aspect ratio needles with careful control of needle-profile using dry etching technologies. Silicon micro-needles, 150μm in length with base-diameters ranging from 90 to 240μm have been investigated in this study. A novel, multiple-sacrificial approach has been demonstrated as suited to the fabrication of long micro-needle bodies with positive profiles. The parameters that control the isotropic etching are adjusted to control the ratio of the needle-base diameter to needle length. By careful control of geometry, the needle profile can be engineered to give a suitable tip size for penetration, as well as a broad needle base to facilitate the creation of either single or multiple-through holes. This approach allows the mechanical properties of the otherwise brittle needles to be optimized. Finite element analysis indicates that the micro-needles will fracture prematurely due to buckling, with forces ranging from 10 to 30mN.
机译:微针的成功发展可以帮助在皮肤上有效和无痛的含药和疫苗。然而,并非所有微针都足够强以承受皮肤的插入力和粘弹性。这里的工作侧重于使用干蚀刻技术进行仔细控制针型的高纵横比针的微制造。本研究已经研究了硅片微针,150μm的长度为90至240μm。已经证明了一种新颖的多阶牺牲方法,适用于具有正型材的长微针体的制造。调节控制各向同性蚀刻的参数以控制针基直径与针长度的比率。通过仔细控制几何形状,可以设计针型材以提供适当的尖端尺寸,用于穿透,以及宽针底座,以便于创造单个或多孔孔。该方法允许优化其他脆性针的机械性能。有限元分析表明,由于屈曲,微针将过早地破裂,力范围为10至30mn。

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