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Cell micropatterning inside a microchannel and assays under a stable concentration gradient

机译:微通道内的细胞微模式分析和稳定浓度梯度下的测定

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We describe the use of a microfluidic device to micropattern cells in a microchannel and investigated the behavior of these cells under a concentration gradient. The microfluidic device consisted of 3 parts: a branched channel for generating a stable concentration gradient, a main channel for culturing cells, and 2 side channels that flowed into the main channel. The main channel was coated with a cross-linked albumin that was initially cell-repellent but that could become cell-adherent by electrostatic adsorption of a polycation. A sheath flow stream, which was generated by introducing a polycation solution from the branched channel and a buffer solution from the 2 side channels, was used to change a specific region in the main channel from cell-repellent to cell-adhesive. In this way, cells attached to the central region along the main channel. The remaining surface was subsequently changed to cell-adhesive, thereby facilitating cell migration from a fixed location under a concentration gradient We demonstrated that with this device, the gradient generator could be used to conduct simultaneous cytotoxic assays with anticancer agents; further, by combining this device with cell micropatterning, migration assays under a concentration gradient of biological factors could be conducted.
机译:我们描述了使用微流控设备微通道中的微模式细胞,并调查了这些细胞在浓度梯度下的行为。微流体装置包括3个部分:一个用于产生稳定浓度梯度的分支通道,一个用于培养细胞的主通道以及两个流入主通道的侧通道。主通道涂有交联的白蛋白,该蛋白起初是可排斥细胞的,但通过聚阳离子的静电吸附可变成细胞粘附的。通过将来自分支通道的聚阳离子溶液和来自两个侧通道的缓冲溶液引入而产生的鞘流用于将主通道中的特定区域从排斥细胞改变为粘附细胞。这样,细胞沿主通道附着在中心区域。随后将剩余的表面更改为具有细胞粘附性,从而在浓度梯度下促进细胞从固定位置迁移。我们证明了使用该设备,梯度发生器可用于同时使用抗癌剂进行细胞毒性试验;此外,通过将该设备与细胞微模式相结合,可以在生物因子浓度梯度下进行迁移分析。

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