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A microfluidic chip for controlled release of drugs from microcapsules

机译:一种微流控芯片用于从微胶囊中控制药物释放

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摘要

A new microfluidic device with liquid-droplet merging and droplet storage functions for the controlled release of drugs from microcapsules is reported. A switching channel is designed and integrated within the microfluidic device, facilitating the generation and capturing of uniform droplets by the storage chambers. The drug model is the MnCO3 microparticle, which is encapsulated by a microcapsule and fabricated using a simple layer-by-layer nanoassembly process. The merging function is used for dynamically adding the control solution into the droplets, which contain drugs within the microcapsules (DWμCs) and water. The storage chambers are used for collecting DWμCs-laden droplets so that the controlled-drug release in specific droplets can be monitored for an extended period of time, which has been experimentally implemented successfully. This technology could offer a promising technical platform for the long-term observation and studies of drug effects on specific cells in a controlled manner, which is especially useful for single cell analysis.
机译:报道了一种具有液滴合并和液滴存储功能的新型微流体装置,用于从微胶囊中控制释放药物。切换通道被设计并集成在微流控设备中,便于通过存储室生成和捕获均匀的液滴。药物模型是MnCO3微粒,它被微囊封装并使用简单的逐层纳米组装工艺制造。合并功能用于将控制溶液动态添加到微滴中,这些微滴包含微胶囊(DWμCs)和水中的药物。储藏室用于收集载有DWμCs的液滴,因此可以长时间监控特定液滴中的受控药物释放,这已通过实验成功实施。该技术可为以受控方式长期观察和研究药物对特定细胞的作用提供有希望的技术平台,这对于单细胞分析特别有用。

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