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Towards a versatile point-of-care system combining femtosecond laser generated microfluidic channels and direct laser written microneedle arrays

机译:朝着Femtosecond激光产生的微流体通道和直接激光写入微针阵列的多功能护理点系统

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Microneedle-based microfluidic systems have a great potential to become well-accepted medical devices for simple, accurate, and painless drug delivery and lab-on-a-chip diagnostics. In this work, we report on a novel hybrid approach combining femtosecond direct laser written microneedles with femtosecond laser generated microfluidic channels providing an important step towards versatile medical point-of-care systems. Hollow microneedle arrays are fabricated by a laser system designed for two-photon polymerization applications. Compression tests of two different types of truncated cone-shaped microneedle arrays prepared from OrmoComp give information about the microneedle mechanical strength, and the results are compared to skin insertion forces. Three-dimensional microchannels are directly created inside PMMA bulk material by an ultrashort pulse laser system with vertical channels having adjustable cross-sectional areas, which allow attaching of microneedles to the microfluidic system. A comprehensive parameter study varying pulse duration and repetition rate is performed on two-photon polymerization to identify an optimal laser power range for fabricating microneedles using the same pulse duration and repetition rate as for microchannels. This addresses the advantage of a single laser system process that overcomes complex fabrication methods. A proof of concept flow test with a rhodamine B dye solution in distilled water demonstrates that the combination of microneedles and microchannels qualifies for microfluidic injection and extraction applications.
机译:微针的微流体系统具有很大的潜力,可以成为可接受的医疗器械,用于简单,准确,无痛的药物递送和芯片诊断。在这项工作中,我们报告了一种新型混合方法,将Femtosecond直接激光写入微针的微核激光产生的微流体通道组合,为多功能医疗的护理系统提供了重要的一步。空心微针阵列由设计用于双光子聚合应用的激光系统制造。从ormocomcom制备的两种不同类型的截锥形微针阵列的压缩试验给出了微针机械强度的信息,并将结果与​​皮肤插入力进行比较。通过超短脉冲激光系统直接在PMMA散装材料内直接在具有可调节横截面积的垂直通道的横截面积内产生的三维微通道,其允许将微酮连接到微流体系统。在两光子聚合上执行综合参数研究改变脉冲持续时间和重复率,以鉴定使用与微通道的相同脉冲持续时间和重复率制造微针的最佳激光功率范围。这解决了克服了复杂的制造方法的单一激光系统过程的优点。蒸馏水中罗丹明B染料溶液的概念流动试验证明微针和微通道的组合符合微流体注射和提取应用。

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