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Microfluidic Device for Controllable Chemical Release via Field-Actuated Membrane Incorporating Nanoparticles

机译:通过掺入纳米颗粒的场致动膜可控化学释放的微流体装置

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摘要

We report a robust magnetic-membrane-based microfluidic platform for controllable chemical release. The magnetic membrane was prepared by mixing polydimethylsiloxane (PDMS) and carbonyl-iron nanoparticles together to obtain a flexible thin film. With combined, simultaneous regulation of magnetic stimulus and mechanical pumping, the desired chemical release rate can easily be realized. For example, the dose release experimental data was well fitted by a mathematical sigmoidal model, exhibiting a typical dose-response relationship, which shows promise in providing significant guidance for on-demand drug delivery. To test the platform’s feasibility, our microfluidic device was employed in an experiment involvingud Escherichia coliud culture under controlled antibiotic ciprofloxacin exposure, and the expected outcomes were successfully obtained. Our experimental results indicate that such a microfluidic device, with high accuracy and easy manipulation properties, can legitimately be characterized as active chemical release system.
机译:我们报告了一个强大的基于磁膜的微流控化学释放平台。通过将聚二甲基硅氧烷(PDMS)和羰基铁纳米颗粒混合在一起以获得柔性薄膜来制备磁性膜。通过同时,同步调节磁刺激和机械泵,可以轻松实现所需的化学释放速率。例如,剂量释放实验数据通过数学S形模型得到了很好的拟合,表现出典型的剂量反应关系,这表明有望为按需药物输送提供重要指导。为了测试该平台的可行性,我们在控制环丙沙星暴露的情况下,将我们的微流控装置用于涉及 ud大肠杆菌 ud培养的实验,并成功获得了预期的结果。我们的实验结果表明,这种具有高精度和易操作性的微流体装置可以合法地表征为活性化学释放系统。

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