Choo Sangmin, Jin SungGiu, Jung JaeHwan
Department of Pharmaceutical Engineering, Dankook University, Cheonan 31116, Korea.
Pharmaceutics. 2022 Mar 31;14(4):766. doi: 10.3390/pharmaceutics14040766.
Microneedles are transdermal drug delivery tools that can be fabricated simply, economically, and rapidly using SLA 3D printing. However, SLA 3D printing has a limitation in that the resolution is slightly lowered when the microneedle is precisely printed. To solve this issue, we optimized the SLA 3D printing conditions such as printing angle, needle height, aspect ratio, and spacing between the microneedles for high-resolution microneedle fabrication. The sharpest microneedle tip was obtained when the printing angle was adjusted to 60° in both the x and y axes. The aspect ratio and the spacing between the microneedles did not affect the output of the sharp tip. Under optimal conditions, the microneedles with 1180 ± 20 µm height, 490 ± 20 µm base, and 30.2 ± 3.4 µm tip diameter were obtained. The dissolving microneedle patch, prepared using the 3D printed microneedle as a mold, penetrated the porcine skin ex vivo. When the printing angle was 60° in the x and y axes, the area of the single stacking layer, including the microneedle tip, increased, and thus the sharp tip could be printed. A high-dimensional, side-notched arrowhead (SNA) microneedle was fabricated by applying the SLA 3D printing condition. Moreover, a letter-type microneedle patch was fabricated using the customized characteristics of 3D printing. Consequently, high-resolution and high-dimensional microneedles were successfully fabricated by adjusting the printing angle using a general SLA 3D printer, and this technology will be applied to the manufacture of drug delivery tools and various microstructures.
微针是一种经皮给药工具,可使用立体光刻(SLA)3D打印技术简单、经济且快速地制造。然而,SLA 3D打印存在局限性,即在精确打印微针时分辨率会略有降低。为了解决这个问题,我们优化了SLA 3D打印条件,如打印角度、针高、长径比和微针之间的间距,以制造高分辨率微针。当在x轴和y轴上的打印角度都调整为60°时,可获得最尖锐的微针尖端。微针的长径比和间距不影响尖锐尖端的输出。在最佳条件下,获得了高度为1180±20 µm、基部为490±20 µm、尖端直径为30.2±3.4 µm的微针。使用3D打印微针作为模具制备的溶蚀性微针贴片在体外穿透了猪皮。当在x轴和y轴上的打印角度为60°时,包括微针尖端在内的单个堆叠层的面积增加,因此可以打印出尖锐的尖端。通过应用SLA 3D打印条件制造了一种高维、侧面有缺口的箭头形(SNA)微针。此外,利用3D打印的定制特性制造了字母型微针贴片。因此,通过使用普通的SLA 3D打印机调整打印角度,成功制造出了高分辨率和高维的微针,这项技术将应用于药物输送工具和各种微结构的制造。