INESC Microsistemas e Nanotecnologias, Lisbon, Portugal.
IBB-Institute for Bioengineering and Biosciences, Lisbon, Portugal.
Methods Mol Biol. 2021;2268:289-304. doi: 10.1007/978-1-0716-1221-7_19.
Microfluidic strategies combined with transduction and electronic integration have the promise of enabling miniaturized, combinatorial assays at higher speeds and lower costs, while at the same time mimicking the local chemical concentrations and force fields of the cellular in vivo environment. In this chapter we introduce a microfluidic structure with hydrodynamic cell traps and a culture volume in the nanoliter range (50 nL), to quantitatively evaluate the transient calcium response of the endogenous Muscarinic type 1 receptor (M1) in HEK 293 T cells. The microfluidic fabrication protocol is described as well as a methodology to monitor the cell response in real time, after stimulation with M1 agonists (e.g., carbachol) and antagonists (e.g., Pirenzepine).
微流控策略结合转导和电子集成有望实现小型化、组合分析,速度更快、成本更低,同时模拟细胞内环境的局部化学浓度和力场。在本章中,我们介绍了一种具有流体动力细胞捕获结构和纳升级培养体积(50nL)的微流控结构,用于定量评估内源性毒蕈碱 1 型受体(M1)在 HEK293T 细胞中的瞬时钙反应。描述了微流控制造方案以及一种在刺激 M1 激动剂(例如,卡巴胆碱)和拮抗剂(例如,哌仑西平)后实时监测细胞反应的方法。