Department of Biosystems Science and Engineering, ETH Zürich, 4058, Mattenstrasse 26, 4058 Basel, Switzerland.
Lab Chip. 2017 Jun 27;17(13):2218-2224. doi: 10.1039/c7lc00531h.
Dynamic cell stimulation is a powerful technique for probing gene networks and for applications in stem cell differentiation, immunomodulation and signaling. We developed a robust and flexible method and associated microfluidic devices to generate a wide-range of precisely formulated dynamic chemical signals to stimulate live cells and measure their dynamic response. This signal generator is capable of digital to analog conversion (DAC) through combinatoric selection of discrete input concentrations, and outperforms existing methods by both achievable resolution, dynamic range and simplicity in design. It requires no calibration, has minimal space requirements and can be easily integrated into microfluidic cell culture devices. The signal generator hardware and software we developed allows to choose the waveform, period and amplitude of chemical input signals and features addition of well-defined chemical noise to study the role of stochasticity in cellular information processing.
动态细胞刺激是一种强大的技术,可以用于探测基因网络,并应用于干细胞分化、免疫调节和信号转导。我们开发了一种强大而灵活的方法和相关的微流控设备,以产生广泛的精确配方的动态化学信号,来刺激活细胞并测量其动态响应。这种信号发生器能够通过离散输入浓度的组合选择进行数字到模拟的转换 (DAC),并且在可实现的分辨率、动态范围和设计的简单性方面都优于现有方法。它不需要校准,空间要求最小,并且可以很容易地集成到微流控细胞培养设备中。我们开发的信号发生器硬件和软件允许选择化学输入信号的波形、周期和幅度,并具有添加明确定义的化学噪声的功能,以研究随机性在细胞信息处理中的作用。