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Scalable fabrication of microneedle arrays via spatially controlled UV exposure

机译:通过空间控制的紫外线照射可扩展制造微针阵列

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摘要

This paper describes a theoretical estimation of the geometry of negative epoxy-resist microneedles prepared via inclined/rotated ultraviolet (UV) lithography based on spatially controlled UV exposure doses. In comparison with other methods based on UV lithography, the present method can create microneedle structures with high scalability. When negative photoresist is exposed to inclined/rotated UV through circular mask patterns, a three-dimensional, needle-shaped distribution of the exposure dose forms in the irradiated region. Controlling the inclination angles and the exposure dose modifies the photo-polymerized portion of the photoresist, thus allowing the variation of the heights and contours of microneedles formed by using the same mask patterns. In an experimental study, the dimensions of the fabricated needles agreed well with the theoretical predictions for varying inclination angles and exposure doses. These results demonstrate that our theoretical approach can provide a simple route for fabricating microneedles with on-demand geometry. The fabricated microneedles can be used as solid microneedles or as a mold master for dissolving microneedles, thus simplifying the microneedle fabrication process. We envision that this method can improve fabrication accuracy and reduce fabrication cost and time, thereby facilitating the practical applications of microneedle-based drug delivery technology.
机译:本文介绍了基于空间控制的UV暴露剂量,通过倾斜/旋转紫外(UV)光刻制备的负环氧微针的几何结构的理论估计。与基于UV光刻的其他方法相比,本方法可以产生具有高可扩展性的微针结构。当负性光致抗蚀剂通过圆形掩模图案暴露于倾斜/旋转的UV时,在照射区域中形成了剂量呈针状的三维分布。控制倾斜角度和曝光剂量可以改变光致抗蚀剂的光聚合部分,从而允许通过使用相同的掩模图案形成的微针的高度和轮廓变化。在一项实验研究中,所制造的针的尺寸与关于改变倾斜角度和暴露剂量的理论预测非常吻合。这些结果表明,我们的理论方法可以为制造具有按需几何形状的微针提供简单的途径。所制造的微针可以用作固体微针或用作溶解微针的模具母模,从而简化了微针的制造过程。我们设想该方法可以提高制造精度并减少制造成本和时间,从而促进基于微针的药物输送技术的实际应用。

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