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一种基于微型多孔氧化铝的流通池,用于使用细菌传感器细胞进行在线水质监测。

A miniature porous aluminum oxide-based flow-cell for online water quality monitoring using bacterial sensor cells.

机构信息

Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

LioniX, Enschede, Netherlands.

出版信息

Biosens Bioelectron. 2015 Feb 15;64:625-32. doi: 10.1016/j.bios.2014.09.076. Epub 2014 Oct 2.

Abstract

The use of live bacterial reporters as sensing entities in whole-cell biosensors allows the investigation of the biological effects of a tested sample, as well as the bioavailability of its components. Here we present a proof of concept for a new design for online continuous water monitoring flow-cell biosensor, incorporating recombinant reporter bacteria, engineered to generate an optical signal (fluorescent or bioluminescent) in the presence of the target compound(s). At the heart of the flow-cell is a disposable chip made of porous aluminum oxide (PAO), which retains the sensor microorganisms on its rigid planar surface, while its high porosity allows an undisturbed access both to the sample and to essential nutrients. The ability of the bacterial reporters to detect model toxic chemicals was first demonstrated using a "naked" PAO chip placed on solid agar, and later in a chip encased in a specially designed flow-through configuration which enables continuous on-line monitoring. The applicability of the PAO chip to simultaneous online detection of diverse groups of chemicals was demonstrated by the incorporation of a 6-member sensor array into the flow-through chip. The selective response of the array was also confirmed in spiked municipal wastewater effluents. Sensing activity was retained by the bacteria after 12-weeks storage of freeze-dried biochips, demonstrating the biochip potential as a simple minimal maintenance "plug-in" cartridge. This low-cost and easy to handle PAO-based flow-cell biosensor may serve as a basis for a future platform for water quality monitoring.

摘要

将活细菌报告器用作全细胞生物传感器中的感应实体,可以研究测试样品的生物效应及其成分的生物利用度。在这里,我们提出了一种新的在线连续水流式生物传感器流动池设计的概念验证,该设计结合了重组报告细菌,这些细菌在存在目标化合物时会产生光学信号(荧光或生物发光)。流动池的核心是由多孔氧化铝(PAO)制成的一次性芯片,它将传感器微生物保留在其刚性平面表面上,而其高多孔性允许样品和必要营养物质不受干扰地进入。细菌报告器检测模型有毒化学物质的能力首先在放置在固体琼脂上的“裸露”PAO 芯片上得到证明,然后在封装在特殊设计的流通配置中的芯片中得到证明,该配置可实现连续在线监测。通过将 6 个成员的传感器阵列整合到流通式芯片中,证明了 PAO 芯片对不同化学物质组的同时在线检测的适用性。在添加市政废水废水的实验中,证实了阵列的选择性响应。经过 12 周的冻干生物芯片储存后,细菌仍然保持着传感活性,这证明了生物芯片作为一种简单的低维护“即插即用”墨盒的潜力。这种低成本且易于操作的基于 PAO 的流动细胞生物传感器可以作为未来水质监测平台的基础。

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