Beijing Key Laboratory of Microanalytical Methods and Instrumentation, Department of Chemistry, Tsinghua University, Beijing 100084, China.
Anal Chem. 2013 Jan 15;85(2):868-76. doi: 10.1021/ac303164b. Epub 2012 Dec 31.
Cell-to-cell communication is a very important physiological behavior in life entity, and most of human behaviors are related to it. Although cell-to-cell communications are attracting much attention and financial support, rare methods have been successfully developed for in vitro cell-to-cell communication study. In this work, we developed a novel method for cell-to-cell communication study on an integrated microdevice, and signaling molecule and metabolites were online-detected by an electrospray ionization-quadrupole-time-of-flight-mass spectrometer (ESI-Q-TOF-MS) after on-chip solid-phase extraction. Moreover, we presented a "Surface Tension Plug" on a microchip to control cell-to-cell communication. The microdevice consists of three functional sections: cell coculture channel, targets pretreatment, and targets detection sections. To verify the feasibility of cell-to-cell communications on the integrated microdevice, we studied the communication between the 293 and the L-02 cells. Epinephrine and glucose were successfully detected using an ESI-Q-TOF-MS with short analysis time (<10 min). The results demonstrated that the developed microfluidic device is a potentially useful tool for high throughput cell-to-cell communication study.
细胞间通讯是生命实体中非常重要的生理行为,人类的大多数行为都与之相关。尽管细胞间通讯吸引了大量的关注和资金支持,但很少有方法成功地用于体外细胞间通讯研究。在这项工作中,我们开发了一种用于集成微设备上细胞间通讯研究的新方法,通过电喷雾电离-四极杆-飞行时间质谱仪(ESI-Q-TOF-MS)在芯片上固相萃取后在线检测信号分子和代谢物。此外,我们在微芯片上提出了一种“表面张力塞”来控制细胞间通讯。微器件由三个功能部分组成:细胞共培养通道、目标物预处理和目标物检测部分。为了验证集成微设备上细胞间通讯的可行性,我们研究了 293 和 L-02 细胞之间的通讯。使用 ESI-Q-TOF-MS 在短分析时间(<10 分钟)内成功检测到了肾上腺素和葡萄糖。结果表明,所开发的微流控装置是高通量细胞间通讯研究的一种有潜力的有用工具。