用于给药的面外杯形不锈钢微针阵列

K. B. Vinayakumar, K. Rajanna, N. S. Dinesh, M. Nayak
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引用次数: 8

摘要

为了改善药物的透皮给药,有许多技术被报道(化学、离子透入、声透入和微针)。在这些技术中,微针技术近年来受到越来越多的关注。目前已成功应用于给药领域的微针主要有实心型和空心型两种。在本文中,我们报道了面外固体不锈钢(SS)微针的制备及其内部微杯结构的形成。采用电火花加工(EDM)方法制备了非平面固体SS微针阵列。随后,利用聚焦离子束(FIB)技术在固体SS微针上形成了微杯结构。微针上的微杯结构作为药物填充的专用区域,避免了微针插入皮肤时可能出现的药物泄漏。采用滴涂法将药物填充到微杯结构中。该包覆方法与杯状微针阵列相结合,可使多种药物按所需比例同时递送。
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Out-of-plane cup shaped stainless steel microneedle array for drug delivery
To improve the transdermal delivery of drug, there are many techniques have been reported (Chemical, Iontophoresis, Sonophoresis and Microneedle). Among these techniques, the microneedle technology gained the more attention in recent years. Mainly, there are two types (Solid and Hollow) of microneedles have been reported for the successful drug delivery application. In this paper, we report on the fabrication of out-of-plane solid Stainless Steel (SS) microneedles and formation of microcup structure within them suitable for drug delivery application. Array of out-of-plane solid SS microneedles were fabricated using Electric Discharge Machining (EDM) method. Subsequently, the microcup structures on the solid SS microneedles were formed using Focused Ion Beam (FIB) technique. The microcup structure on the microneedles acts as a dedicated region to fill the drug, so that the possible drug leakage while inserting the microneedles into the skin can be avoided. The drug filling into the microcup structures was performed using drop coating method. This coating method in combination with cup shaped microneedle array enables to deliver multiple drugs simultaneously in desired proportion.
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