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Mechanically flexible microfluidics for microparticle dispensing based on traveling wave dielectrophoresis

机译:基于行波介电泳的微粒分配机械柔性微流体

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摘要

Transdermal delivery has emerged as an attractive drug administration approach. A soft flexible transdermal delivery device that can dispense drugs in an on-demand and controllable manner is promising for healthcare. Here we report a mechanically flexible microfluidic device with on-demand and controllable dispensing capability based on traveling wave dielectrophoresis (twDEP). The device is an integration of a microfluidic channel for microparticle transport and an interdigitated electrode array for phase-shifted electric field generation. Microparticles are used to mimic drug molecules. The twDEP provides a feasible mechanism for microparticle transportation. The on-demand dispensing is achieved upon the application of alternating current (AC) electrical inputs. The dispensing flow velocity controllability lies in the amplitude and frequency of the applied AC potential. The demonstration of controllable microparticle dispensing in the mechanically flexible microfluidic device suggests its usage for transdermal drug dispensing through optimization based on drug properties and integration with drug storage and release components.
机译:透皮递送已成为有吸引力的药物管理方法。一种软柔性透皮递送装置,可以按需和可控的方式分配药物是对医疗保健的承诺。在这里,我们报告了一种机械柔性的微流体装置,基于行波介电泳(TWDEP)为温柔和可控的分配能力。该装置是微粒传输的微流体通道的整合和用于相移电场产生的微粒输送和互连电极阵列。微粒用于模拟药物分子。 TWDEP为微粒运输提供了可行的机制。在应用交流(AC)电输入时实现了按需分配。分配流速可控性在于所施加的AC电位的幅度和频率。在机械柔性微流体装置中可控微粒分配的证明表明,通过基于药物性质和与药物储存和释放组分的整合,通过优化的优化来使用透皮药物的用途。

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