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Single-cell trapping and selective treatment via co-flow within a microfluidic platform

机译:通过微流平台中的共流进行单细胞捕获和选择性处理

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Lab on a chip (LOC) systems provide interesting and low-cost solutions for key studies and applications in the biomedical field. Along with microfluidics, these microdevices make single-cell manipulation possible with high spatial and temporal resolution. In this work we have designed, fabricated and characterized a versatile and inexpensive microfluidic platform for on-chip selective single-cell trapping and treatment using laminar co-flow. The combination of co-existing laminar flow manipulation and hydrodynamic single-cell trapping for selective treatment offers a cost-effective solution for studying the effect of novel drugs on single-cells. The operation of the whole system is experimentally simple, highly adaptable and requires no specific equipment. As a proof of concept, a cytotoxicity study of ethanol in isolated hepatocytes is presented. The developed microfluidic platform controlled by means of co-flow is an attractive and multipurpose solution for the study of new substances of high interest in cell biology research. In addition, this platform will pave the way for the study of cell behavior under dynamic and controllable fluidic conditions providing information at the individual cell level. Thus, this analysis device could also hold a great potential to easily use the trapped cells as sensing elements expanding its functionalities as a cell-based biosensor with single-cell resolution.
机译:芯片实验室(LOC)系统为生物医学领域的关键研究和应用提供了有趣且低成本的解决方案。与微流体一起,这些微设备使单细胞操作成为可能,具有高时空分辨率。在这项工作中,我们设计,制造并表征了一种通用且廉价的微流控平台,用于使用层流共流进行芯片上选择性单细胞捕获和处理。层流控制与流体动力学单细胞捕集的共存用于选择性治疗,为研究新型药物对单细胞的作用提供了一种经济高效的解决方案。整个系统的操作在实验上很简单,适应性强,不需要特定的设备。作为概念的证明,提出了分离的肝细胞中乙醇的细胞毒性研究。通过共流控制的已开发微流控平台是一种吸引人的多功能解决方案,用于研究细胞生物学研究中高度关注的新物质。此外,该平台还将为研究动态和可控流体条件下细胞行为的方式铺平道路,从而在单个细胞水平上提供信息。因此,该分析装置还具有很大的潜力,可以轻松地将捕获的细胞用作传感元件,从而扩展其功能,成为具有单细胞分辨率的基于细胞的生物传感器。

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