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Chemostat-like microfluidic platform for highly sensitive detection of heavy metal ions using microbial biosensors

机译:Chemostat的微流体平台,用于使用微生物生物传感器的重金属离子的高敏感性检测

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Reporter-gene-based microbial biosensors have high potential for detecting small molecules, including heavy metal ions (HMIs). However, the sensitivity and dynamic range of microbial biosensors are largely limited by the conventional culture environments that rely on the batch-type addition of the small molecules in nutrients and the subsequent genetic induction. In this work, we report a chemostat-like microfluidic platform that can continuously supply both nutrients and inducers (e.g. Pb~(2+) and Cd~(2+)) with microbial biosensors. We employed a mixing microchannel network integrated with microfabricated ratchet structures so that fresh and constant culture environments were conserved for microbial biosensors. Such chemostat-like microfluidic platform enabled sensitive and selective detection of HMIs by enhancing cell growth rates on a chip and even in a high throughput manner.
机译:报告基因基微生物生物传感器具有检测小分子的高潜力,包括重金属离子(HMI)。然而,微生物生物传感器的敏感性和动态范围主要受到依赖于营养成分中的小分子和随后的遗传诱导的批量型添加的常规培养环境的限制。在这项工作中,我们报告了一种类似化的微流体平台,可以用微生物生物传感器连续地提供营养和诱导剂(例如Pb〜(2+)和Cd〜(2+)。我们使用与微型制造棘轮结构集成的混合微通道网络,以便为微生物生物传感器保守新鲜和恒定的培养环境。这种化疗样的微流体平台通过增强芯片上的细胞生长速率和甚至以高吞吐量的方式,使HMI的敏感和选择性地检测。

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