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Membrane-sealed hollow microneedles and related administration schemes for transdermal drug delivery

机译:膜密封空心微针及相关给药方案,用于透皮给药

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This paper presents fabrication and testing of membrane-sealed hollow microneedles. This novel concept offers the possibility of a sealed microneedle-based transdermal drug delivery system in which the drug is stored and protected from the environment. Sealed microneedles were fabricated by covering the tip openings of out-of-plane silicon microneedles with thin gold membranes. In this way a leak-tight seal was established which hinders both contamination and evaporation. To allow drug release from the microneedles, three different methods of opening the seals were investigated: burst opening by means of pressure; opening by applying a small voltage in the presence of physiological saline; and opening as a result of microneedle insertion into the skin. It was found that a 170 nm thick gold membrane can withstand a pressure of approximately 120 kPa. At higher pressures the membranes burst and the microneedles are opened up. The membranes can also be electrochemically dissolved within 2 min in saline conditions similar to interstitial fluid present in the skin. Moreover, through in vivo tests, it was demonstrated that 170 nm thick membranes break when the microneedles were inserted into skin tissue. The proposed concept was demonstrated as a feasible option for sealing hollow microneedles. This enables the realization of a closed-package transdermal drug delivery system based on microneedles.
机译:本文介绍了膜密封空心微针的制造和测试。这个新颖的概念提供了基于密封的基于微针的透皮药物递送系统的可能性,在该系统中,药物被存储并且被保护免受环境影响。通过用薄的金膜覆盖平面外硅微针的尖端开口来制造密封的微针。以这种方式建立了密封的密封,该密封既阻碍污染又阻止蒸发。为了使药物从微针中释放出来,研究了三种不同的打开密封件的方法:通过压力进行爆裂打开;通过压力打开;通过压力打开;通过压力释放。在生理盐水存在的情况下通过施加小电压打开;由于微针插入皮肤而打开。发现170nm厚的金膜可以承受约120kPa的压力。在更高的压力下,膜破裂并且微针被打开。类似于在皮肤中存在的组织液,也可以在生理盐水中2分钟内将膜电化学溶解。此外,通过体内试验,证明了当将微针插入皮肤组织时170 nm厚的膜破裂。提出的概念被证明是用于密封空心微针的可行选择。这使得能够实现基于微针的封闭包装的透皮药物递送系统。

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