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A whole-cell amperometric herbicide biosensor based on magnetically functionalised microalgae and screen-printed electrodes

机译:基于磁功能化微藻和丝网印刷电极的全细胞安培除草剂生物传感器

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We report the fabrication of an amperometric whole-cell herbicide biosensor based on magnetic retention of living cells functionalised with magnetic nanoparticles (MNPs) on the surface of a screen-printed electrode. We demonstrate that Chlorella pyrenoidosa microalgae cells coated with biocompatible MNPs and retained on the electrode with a permanent magnet act as a sensing element for the fast detection of herbicides. The magnetic functionalisation does not affect the viability and photosynthesis activity-mediated triazine herbicide recognition in microalgae. The current of ferricyanide ion was recorded during alternating illumination periods and biosensor fabricated was used to detect atrazine (from 0.9 to 74 μM) and propazine (from 0.6 to 120 μM) (the limits of detection 0.7 and 0.4 μM, respectively). We believe that the methodology presented here can be widely used in fabrication of a number of whole cell biosensors since it allows for efficient and reversible cells immobilisation and does not affect the cellular metabolism...
机译:我们报告的安培全细胞除草剂生物传感器的制造基于在丝网印刷的电极表面上具有磁性纳米粒子(MNPs)功能化的活细胞的磁性保留。我们证明,涂有生物相容性MNP并保留在电极上的永磁小球藻小藻细胞可作为感测元件,用于快速检测除草剂。磁性官能化不影响微藻中的活力和光合作用介导的三嗪除草剂识别。在交替照射期间记录铁氰化物离子的电流,并使用制造的生物传感器检测阿特拉津(0.9至74μM)和丙嗪(0.6至120μM)(检测极限分别为0.7和0.4μM)。我们相信这里介绍的方法可以广泛用于制造许多全细胞生物传感器,因为它可以有效且可逆地固定细胞,并且不影响细胞代谢。

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