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Microfluidic Concentric Gradient Generator Design for High-Throughput Cell-Based Studies

机译:基于高通量细胞的微流同心梯度发生器设计

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摘要

Gradients of diffusible signaling molecules play important role in various processes, ranging from cell differentiation to toxicological evaluation. Microfluidic technology provides an accurate control of tempospatial conditions. However, current microfluidic platforms are not designed to handle multiple gradients and cell populations simultaneously. Here, we demonstrate a rapidly adaptable microfluidic design able to expose multiple cell populations to an array of chemical gradients. Our design is based on pressure-equilibrated concentric channels and a pressure-dissipating control layer, facilitating the seeding of multiple cell populations in a single device. The design was numerically evaluated and experimentally validated. The device consists of 8 radiating stimuli channels and 12 circular cell culture channels, creating an array of 96 different continuous gradients that can be simultaneously monitored over time.
机译:可扩散信号分子的梯度在从细胞分化到毒理学评估的各种过程中都起着重要作用。微流体技术提供了对颞pat状态的精确控制。但是,当前的微流体平台并未设计为同时处理多个梯度和细胞群体。在这里,我们展示了一种快速适应性的微流控设计,能够将多个细胞群体暴露于一系列化学梯度中。我们的设计基于压力平衡的同心通道和压力耗散控制层,有助于在单个设备中播种多个细胞群体。对设计进行了数值评估和实验验证。该设备由8个辐射刺激通道和12个圆形细胞培养通道组成,创建了96个不同连续梯度的阵列,可以随时间同时对其进行监控。

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