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Induced charge electro-osmotic concentration gradient generator

机译:感应电荷电渗浓度梯度发生器

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摘要

Biomolecule gradients play an important role in the understanding of various biological processes. Typically, biological cells are exposed to linear and nonlinear concentration gradients and their response is studied for understanding cell growth, cell migration, and cell differentiation mechanisms. Recent studies have demonstrated the use of microfluidic devices for precise and stable concentration gradient generation. However, most of the reported devices are geometrically complex and lack dynamic controllability. In this work, a novel microfluidic gradient generator is presented which utilizes the induced charge electro-osmosis (ICEO) by introducing conducting obstacle in the microchannel. With the ICEO flow component, significant transverse convection can be generated within the microchannel, which can, in turn, be used to create nonlinear as well as asymmetric gradients. The characteristics of the developed concentration gradient are dependent on the interplay between fixed charge electro-osmotic and ICEO flows. It is shown that the proposed device can switch between linear and nonlinear gradients by just altering the applied electric field. Finally, the formation of user-defined concentration profiles (linear, convex, and concave) is demonstrated by varying the conducting obstacle size.
机译:生物分子梯度在理解各种生物过程中起着重要作用。通常,生物细胞会暴露于线性和非线性浓度梯度,并对其反应进行研究以了解细胞生长,细胞迁移和细胞分化机制。最近的研究表明,使用微流控装置可产生精确而稳定的浓度梯度。然而,大多数报道的设备在几何上都是复杂的并且缺乏动态可控性。在这项工作中,提出了一种新型的微流体梯度发生器,该发生器通过在微通道中引入传导障碍物来利用感应电荷电渗(ICEO)。利用ICEO流量分量,可以在微通道内产生明显的横向对流,进而可以用来创建非线性以及非对称梯度。所形成的浓度梯度的特性取决于固定电荷电渗流与ICEO流动之间的相互作用。结果表明,所提出的装置只需改变施加的电场就可以在线性和非线性梯度之间切换。最后,通过改变导电障碍物的尺寸来演示用户定义的浓度分布图(线性,凸形和凹形)的形成。

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