Department of Chemical and Biological Engineering, Chalmers University of Technology, Kemivagen 10, SE-412 96 Goteborg, Sweden.
Anal Chem. 2010 Jun 1;82(11):4529-36. doi: 10.1021/ac100480f.
We report on a free-standing microfluidic pipette made in poly(dimethylsiloxane) having a circulating liquid tip that generates a self-confining volume in front of the outlet channels. The method is flexible and scalable as the geometry and the size of the recirculation zone is defined by pressure, channel number, and geometry. The pipette is capable of carrying out a variety of complex fluid processing operations, such as mixing, multiplexing, or gradient generation at selected cells in cell and tissue cultures. Using an uptake assay, we show that it is possible to generate dose-response curves in situ from adherent Chinese hamster ovary cells expressing proton-activated human transient receptor potential vanilloid (hTRPV1) receptors. Using confined superfusion and cell stimulation, we could activate hTRPV1 receptors in single cells, measure the response by a patch-clamp pipette, and induce membrane bleb formation by exposing selected groups of cells to formaldehyde/dithiothreitol-containing solutions, respectively. In short, the microfluidic pipette allows for complex, contamination-free multiple-compound delivery for pharmacological screening of intact adherent cells.
我们报告了一种由聚二甲基硅氧烷制成的独立式微流控移液器,其具有循环液体尖端,在出口通道前方产生自限制体积。该方法具有灵活性和可扩展性,因为通过压力、通道数量和几何形状来定义再循环区的几何形状和尺寸。该移液器能够执行各种复杂的流体处理操作,例如在细胞和组织培养物中的选定细胞处进行混合、多路复用或梯度生成。使用摄取测定法,我们表明,有可能从表达质子激活的人类瞬时受体电位香草素(hTRPV1)受体的贴壁中国仓鼠卵巢细胞原位生成剂量反应曲线。使用受限超灌注和细胞刺激,我们可以在单个细胞中激活 hTRPV1 受体,通过膜片钳管来测量响应,并通过将选定的细胞组暴露于含甲醛/二硫苏糖醇的溶液来分别诱导膜泡形成。简而言之,微流控移液器允许进行复杂的、无污染的多化合物输送,用于完整贴壁细胞的药理学筛选。