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A sharp-edge-based acoustofluidic chemical signal generator

机译:基于尖锐的声散流体化学信号发生器

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Resolving the temporal dynamics of cell signaling pathways is essential for regulating numerous downstream functions, from gene expression to cellular responses. Mapping these signaling pathways requires the exposure of cells to time-varying chemical signals; these are difficult to generate and control over a wide temporal range. Herein, we present an acoustofluidic chemical signal generator based on a sharpedge- based micromixing strategy. The device, simply by modulating the driving signals of an acoustic transducer including the ON/OFF switching frequency, actuation time and duty cycle, is capable of generating both single-pulse and periodic chemical signals that are temporally controllable in terms of stimulation period, stimulation duration and duty cycle. We also demonstrate the device's applicability and versatility for cell signaling studies by probing the calcium (Ca2+) release dynamics of three different types of cells stimulated by ionomycin signals of different shapes. Upon short single-pulse ionomycin stimulation (100 ms) generated by our device, we discover that cells tend to dynamically adjust the intracellular level of Ca2+ through constantly releasing and accepting Ca2+ to the cytoplasm and from the extracellular environment, respectively. With advantages such as simple fabrication and operation, compact device design, and reliability and versatility, our device will enable decoding of the temporal characteristics of signaling dynamics for various physiological processes.
机译:解决细胞信号传导途径的时间动态对于调节许多下游功能,从基因表达到细胞反应是必不可少的。映射这些信号传导途径需要将细胞暴露于时变化学信号;这些难以在宽的时间范围内产生和控制。在此,我们基于基于斯坦克基的微混凝策略呈现了声杂化化学信号发生器。仅通过调制包括开/关开关频率,致动时间和占空比的声学传感器的驱动信号的装置能够在刺激周期,刺激方面产生时间上可控的单脉冲和周期性化学信号。持续时间和占空比。我们还通过探测通过不同形状的离子霉素信号刺激的三种不同类型细胞的钙(Ca2 +)释放动态来证明该装置的适用性和多功能性。在我们的装置产生的单脉冲离子菌素刺激(100ms)时,我们发现细胞倾向于通过不断释放和接受CA2 +分别动态地调节CA2 +的细胞内水平。具有简单的制造和操作,结构紧凑的装置设计和可靠性和多功能性等优点,我们的设备将能够解码各种生理过程的信号动态的时间特征。

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