Bioelectrical conversion in sensors with living cells.

Physiologie (Bucarest) Pub Date : 1989-10-01
H Vais, I Ardelean, D G Mărgineanu
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引用次数: 0

Abstract

Bacterial metabolism can drive various processes with biotechnological significance, like in the case of biosensors for probing organic compounds, or in biofuel cells. Here we present some of our results connected with the construction of a bacterial electrode with Pseudomonas sp. for probing glucose in body fluids, and those related to biofuel cells with anaerobic bacteria (Clostridium sp.). The output of the bioselective electrode linearly indicates glucose concentrations in the 2.5 x 10(-5)-1.25 x 10(-4) M domain, with a sensitivity limit of 10(-5) M. The time constant is 10 min, and it works for more than ten days. The amperometric response of biofuel cells with Clostridium sp. offers the electrical image of the state of the bacterial culture itself, thus being a promising tool for the automated control of the bacterial suspensions used in fermentative reactors.

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带有活细胞的传感器中的生物电转换。
细菌代谢可以驱动具有生物技术意义的各种过程,例如用于探测有机化合物的生物传感器或生物燃料电池。在这里,我们介绍了一些与假单胞菌细菌电极的构建有关的结果,这些细菌电极用于探测体液中的葡萄糖,以及与厌氧细菌(梭状芽胞杆菌)生物燃料电池相关的结果。该生物选择电极输出在2.5 × 10(-5)-1.25 × 10(-4) M域线性指示葡萄糖浓度,灵敏度限为10(-5)M,时间常数为10 min,工作时间超过10天。使用梭状芽胞杆菌的生物燃料电池的安培响应提供了细菌培养本身状态的电学图像,因此成为发酵反应器中使用的细菌悬浮液自动控制的有前途的工具。
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