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Microfluidic device for generating a stepwise concentration gradient on a microwell slide for cell analysis

机译:用于在微孔载玻片上产生逐步浓度梯度以进行细胞分析的微流体装置

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摘要

Understanding biomolecular gradients and their role in biological processes is essential for fully comprehending the underlying mechanisms of cells in living tissue. Conventional in vitro gradient-generating methods are unpredictable and difficult to characterize, owing to temporal and spatial fluctuations. The field of microfluidics enables complex user-defined gradients to be generated based on a detailed understanding of fluidic behavior at the lm-scale. By using microfluidic gradients created by flow, it is possible to develop rapid and dynamic stepwise concentration gradients. However, cells exposed to stepwise gradients can be perturbed by signals from neighboring cells exposed to another concentration. Hence, there is a need for a device that generates a stepwise gradient at discrete and isolated locations. Here, we present a microfluidic device for generating a stepwise concentration gradient, which utilizes a microwell slide's pre-defined compartmentalized structure to physically separate different reagent concentrations. The gradient was generated due to flow resistance in the microchannel configuration of the device, which was designed using hydraulic analogy and theoretically verified by computational fluidic dynamics simulations. The device had two reagent channels and two dilutant channels, leading to eight chambers, each containing 4 microwells. A dose-dependency assay was performed using bovine aortic endothelial cells treated with saponin. High reproducibility between experiments was confirmed by evaluating the number of living cells in a live-dead assay. Our device generates a fully mixed fluid profile using a simple microchannel configuration and could be used in various gradient studies, e.g., screening for cytostatics or antibiotics. (C) 2013 AIP Publishing LLC.
机译:了解生物分子梯度及其在生物过程中的作用对于充分理解活组织中细胞的潜在机制至关重要。由于时间和空间的波动,常规的体外梯度产生方法是不可预测的并且难以表征。微流体技术领域可以基于对lm级流体行为的详细了解,生成复杂的用户定义的梯度。通过使用由流动产生的微流体梯度,可以建立快速而动态的逐步浓度梯度。但是,暴露于逐步梯度的细胞可能会受到来自暴露于另一种浓度的相邻细胞的信号的干扰。因此,需要一种在离散和隔离的位置处产生逐步梯度的装置。在这里,我们介绍了一种用于产生逐步浓度梯度的微流体装置,该装置利用微孔载玻片的预定义隔室结构来物理分离不同的试剂浓度。梯度是由于设备的微通道配置中的流动阻力而产生的,该梯度是使用水力类比设计的,并通过计算流体动力学模拟进行了理论验证。该设备具有两个试剂通道和两个稀释剂通道,通向八个小室,每个小室包含4个微孔。使用经皂苷处理的牛主动脉内皮细胞进行剂量依赖性测定。通过评估活死分析中活细胞的数量,证实了实验之间的高重复性。我们的设备使用简单的微通道配置即可生成完全混合的流体曲线,可用于各种梯度研究,例如筛选细胞抑制剂或抗生素。 (C)2013 AIP Publishing LLC。

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