Park Jung-Hwan, Yoon Yong-Kyu, Choi Seong-O, Prausnitz Mark R, Allen Mark G
Department of BioNano Technology, Kyungwon University, Gachon BioNano Research Institute, Gyeonggi-Do 461-701, Korea.
IEEE Trans Biomed Eng. 2007 May;54(5):903-13. doi: 10.1109/TBME.2006.889173.
Administration of protein and DNA biotherapeutics is limited by the need for hypodermic injection. Use of micron-scale needles to deliver drugs in a minimally invasive manner provides an attractive alternative, but application of this approach is limited by the need for suitable microneedle designs and fabrication methods. To address this need, this paper presents a conical polymer microneedle design that is fabricated using a novel integrated lens technique and analyzed for its ability to insert into the skin without mechanical failure. Microneedle master structures were fabricated using microlenses etched into a glass substrate that focused light through SU-8 negative epoxy resist to produce sharply tapered structures. Microneedle replicates were fabricated out of biodegradable polymers by micromolding. Because microneedle mechanical properties are critical to their insertion into the skin, we theoretically modeled two failure modes (axial mode and transverse mode), and analytical models were compared with measured data showing general agreement. Guided by this analysis, polymer microneedles were designed and demonstrated to insert to different depths into porcine skin in vitro. "Long" polymer microneedles were also demonstrated in human subjects to insert deeply without failure.
蛋白质和DNA生物疗法的给药受到皮下注射需求的限制。使用微米级针头以微创方式给药提供了一种有吸引力的替代方法,但这种方法的应用受到合适的微针设计和制造方法的限制。为满足这一需求,本文提出了一种锥形聚合物微针设计,该设计采用新型集成透镜技术制造,并对其插入皮肤而不发生机械故障的能力进行了分析。微针母结构是通过蚀刻在玻璃基板上的微透镜制造的,这些微透镜将光聚焦通过SU-8负性环氧抗蚀剂以产生尖锐的锥形结构。微针复制品通过微成型由可生物降解的聚合物制成。由于微针的机械性能对其插入皮肤至关重要,我们从理论上对两种失效模式(轴向模式和横向模式)进行了建模,并将分析模型与测量数据进行了比较,结果显示总体一致。在此分析的指导下,设计并证明了聚合物微针能够在体外插入猪皮肤的不同深度。“长”聚合物微针也在人体受试者中得到了证明,能够深入插入且无故障。