He Luye, Kniss Ariel, San-Miguel Adriana, Rouse Tel, Kemp Melissa L, Lu Hang
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Dr. NW, Atlanta, GA, USA 30332-0100.
Lab Chip. 2015 Mar 21;15(6):1497-507. doi: 10.1039/c4lc01070a.
Cell signaling events are orchestrated by dynamic external biochemical cues. By rapidly perturbing cells with dynamic inputs and examining the output from these systems, one could study the structure and dynamic properties of a cellular signaling network. Conventional experimental techniques limit the implementation of these systematic approaches due to the lack of sophistication in manipulating individual cells and the fluid microenvironment around them; existing microfluidic technologies thus far are mainly targeting adherent cells. In this paper we present an automated platform to interrogate suspension cells with dynamic stimuli while simultaneously monitoring cellular responses in a high-throughput manner at single-cell resolution. We demonstrate the use of this platform in an experiment to measure Jurkat T cells in response to distinct dynamic patterns of stimuli; we find cells exhibit highly heterogeneous responses under each stimulation condition. More interestingly, these cells act as low-pass filters, only entrained to the low frequency stimulus signals. We also demonstrate that this platform can be easily programmed to actively generate arbitrary dynamic signals. We envision our platform to be useful in other contexts to study cellular signaling dynamics, which may be difficult using conventional experimental methods.
细胞信号转导事件由动态的外部生化线索精心编排。通过用动态输入快速扰动细胞并检查这些系统的输出,人们可以研究细胞信号网络的结构和动态特性。由于在操纵单个细胞及其周围的流体微环境方面缺乏复杂性,传统实验技术限制了这些系统方法的实施;迄今为止,现有的微流控技术主要针对贴壁细胞。在本文中,我们展示了一个自动化平台,该平台可以用动态刺激询问悬浮细胞,同时以单细胞分辨率高通量地监测细胞反应。我们展示了该平台在一个实验中的应用,该实验测量了Jurkat T细胞对不同动态刺激模式的反应;我们发现细胞在每种刺激条件下都表现出高度异质的反应。更有趣的是,这些细胞充当低通滤波器,仅被低频刺激信号所带动。我们还证明,该平台可以轻松编程以主动生成任意动态信号。我们设想我们的平台在其他研究细胞信号动力学的背景下会很有用,而使用传统实验方法可能会很困难。