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A mediator-free whole-cell electrochemical biosensing system for sensitive assessment of heavy metal toxicity in water

机译:无介质的全细胞电化学生物传感系统,用于水中重金属毒性的敏感评估

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摘要

A bioelectrochemical sensing system (BES) based on electroactive bacteria (EAB) has been used as a new and promising tool for water toxicity assessment. However, most EAB can reduce heavy metals, which usually results in low toxicity response. Herein, a starvation pre-incubation strategy was developed which successfully avoided the metal reduction during the toxicity sensing period. By integrating this starvation pre-incubation procedure with the amperometric BES, a sensitive, robust and mediator-free biosensing method for heavy metal toxicity assessment was developed. Under the optimized conditions, the IC50 (half maximal inhibitory concentration) values for Cu2+, Ni2+, Cd2+, and Cr6+ obtained were 0.35, 3.49, 6.52, 2.48 mg L-1, respectively. The measurement with real water samples also suggested this method was reliable for practical application. This work demonstrates that it is feasible to use EAB for heavy metal toxicity assessment and provides a new tool for water toxicity warning.
机译:基于电活性细菌(EAB)的生物电化学传感系统(BES)已被用作水毒性评估的新和有前途的工具。然而,大多数EAB可以减少重金属,这通常会导致低毒性反应。在此,开发了饥饿预孵育策略,其成功地避免了毒性感测期间的金属降低。通过将该饥饿预孵育程序与Amperometric BES集成,开发了一种用于重金属毒性评估的敏感,鲁棒和介导的生物传感方法。在优化条件下,Cu 2 +,Ni2 +,CD2 +和Cr6 +的IC 50(半最大抑制浓度)值分别为0.35,3.49,6.52,2.48mg L-1。使用真实水样的测量还提出了这种方法对于实际应用是可靠的。这项工作表明,对重金属毒性评估使用EAB是可行的,并为水毒性的新工具提供了一种新的毒性警告。

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