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A novel fabrication method of a microneedle array using inclined deep x-ray exposure

机译:一种利用倾斜深x射线曝光的微针阵列的新颖制造方法

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We investigated a novel fabrication method of a microneedle array. In microneedle fabrication methods employed to date, researchers have used conventional silicon-based fabrication methods such as inductively coupled plasma etching and wet etching techniques. However, these processes are not sufficient for the fabrication of a longer needle shank and applications such as blood extraction from the skin surface. Using a deep x-ray, high-aspect-ratio (HAR) 3D microstructures can be fabricated. The fabrication process consists of a vertical deep x-ray exposure and a successive inclined deep x-ray exposure. The first vertical exposure makes a triangular column array with a needle conduit through a deep x-ray mask having a triangular and hollow circle shape pattern. The column array is shaped into the microneedle array by the second inclined exposure without additional mask alignment. Changing the inclined angle and the gap between the mask and polymethylmet-acrylate (positive photoresist) substrate, different types of microneedle arrays are fabricated. The fabricated microneedle fulfills the structural requirements for painless drug delivery and blood extraction including a 3D sharp tapered tip, HAR shanks, small invasive surface area and an out-of-plane-type structure. In a skin puncture test, the microneedle array penetrates the skin of the back of the hand without tip breaking.
机译:我们研究了一种微针阵列的新型制造方法。在迄今为止采用的微针制造方法中,研究人员已经使用了常规的基于硅的制造方法,例如感应耦合等离子体蚀刻和湿蚀刻技术。然而,这些方法不足以制造更长的针柄和诸如从皮肤表面抽血的应用。使用深X射线,可以制造高纵横比(HAR)3D微结构。制造过程包括垂直的深X射线曝光和连续的倾斜的深X射线曝光。第一次垂直曝光通过具有三角形和空心圆形形状图案的深X射线掩模形成带有针管的三角形列阵列。通过第二次倾斜曝光将列阵列成形为微针阵列,而无需额外的掩模对准。改变掩模和聚甲基丙烯酸甲酯(正性光致抗蚀剂)衬底之间的倾斜角和间隙,可以制造不同类型的微针阵列。所制造的微针满足无痛药物输送和血液抽取的结构要求,包括3D尖锐的锥形尖端,HAR柄,较小的侵入表面积和平面外型结构。在皮肤穿刺测试中,微针阵列可穿透手背的皮肤而不会折断尖端。

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