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Fabrication of biodegradable polymer microneedle array via CO2 laser ablation

机译:CO 2 激光烧蚀制备可生物降解的聚合物微针阵列

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Fabrication of biodegradable polylacticcoglycolic acid (PLGA) microneedle array through CO laser processing have been studied and analyzed. The high-aspect-ratio microneedle mold can be obtained using the rapid and low-cost laser processing compared to conventional photolithography and dry etching processes. The laser processing on PDMS results in the problems of scorches and re-solidification. Here, we use the direct-write laser processing microneedle mold structure on PMMA and then perform two-casting PDMS process to form female microneedle mold. Then pour PLGA into PDMS female mold pre-treated by O plasma and drying in vacuum chamber. Finally, the complete PLGA microneedle array is released from the PDMS mold which is reusable. The polymer microneedle depth can be from hundreds of micrometers to millimeter that is related to the PMMA structure profile and determined by CO laser power and scanning speed. The modified integration of laser processing and molding process is maskless, simple, and low-cost for rapid prototyping.
机译:研究和分析了通过CO激光加工可生物降解的聚乳酸乙醇酸微针阵列。与传统的光刻和干法蚀刻工艺相比,可以使用快速,低成本的激光加工工艺来获得高纵横比的微针模具。 PDMS上的激光加工会导致焦烧和重新固化的问题。在这里,我们在PMMA上使用直接写入激光加工微针模具结构,然后执行两次浇铸PDMS工艺以形成母微针模具。然后将PLGA倒入经O等离子体预处理的PDMS母模中,并在真空室中干燥。最后,将完整的PLGA微针阵列从可重复使用的PDMS模具中取出。聚合物微针深度可以从数百微米到毫米,这与PMMA结构轮廓有关,并由CO激光功率和扫描速度确定。激光加工和成型工艺的改进集成是无掩模,简单且低成本的快速原型。

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