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Direct enzyme immobilization on SPEs for electrochemical pesticide detection in olive oil, utilizing Laser Induced Forward Transfer

机译:橄榄油中电化学农药检测的直接酶固定化,利用激光诱导转移

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Electrochemical biosensors are increasingly used for the detection of various analytes (pesticides, mycotoxins etc.) in food, due to the rapid and reliable detection that can be achieved without the need for expensive instrumentation equipment, skilled personnel and long time-to-result that is required by conventional analytical techniques. Laser Induced Forward Transfer (LIFT) bio-printing in combination with an all- in- one enzyme solution (a solution that includes the enzyme mixed with signal-enhancing carbon-based materials suspended in a polymer matrix) provides new possibilities for biosensor pesticide detection in olive oil as it delivers direct and accurate immobilization of enzyme solution with high special resolution and the ability to print in significantly smaller electrode surfaces for less material waste. Here, we report the use of LIFT technique, utilizing a 355 nanosecond laser for the highly precise, direct deposition and immobilization of Acetylcholinesterase (AChE) on screen printed electrode (SPE) surfaces. Due to the high impact pressure of the transferred droplets at the receiver substrate, the physical adsorption of the enzyme mixture onto the surface is enhanced, improving the electrochemical communication with the SPE. The inhibitory effect of the analytes on the AChE biosensor was evaluated amperometrically by determining the decrease in the current obtained for the oxidation of the thiocholine produced by the enzyme upon incubation with pesticide solutions, and a LoD below the legislation limit (10 ppb) was achieved. Furthermore, the biosensor's performance was assessed in olive oil samples spiked with carbofuran and chlorpyrifos, following an optimized pretreatment protocol, with very satisfactory recovery values.
机译:电化学生物传感器越来越多地用于在食品中检测食品中的各种分析物(农药,霉菌毒素等),这是由于可以实现的快速可靠的检测,而无需昂贵的仪器设备,熟练的人员和长时间的时间常规分析技术需要。激光诱导的前后转移(提升)生物印刷与一体化酶溶液(包括悬浮在聚合物基质中悬浮的信号增强的碳基材料)的溶液相结合,为生物传感器农药检测提供了新的可能性在橄榄油中,它具有高特殊分辨率的直接和准确地固定酶溶液,并在明显较小的电极表面上打印的能力,以较少的材料废物。在这里,我们报告使用提升技术,利用355纳秒激光器在筛选印刷电极(SPE)表面上的高精度,直接沉积和固定的高精度,直接沉积和固定化。由于接收器衬底的转移液滴的高冲击压力,增强了酶混合物到表面上的物理吸附,从而提高了与SPE的电化学通信。通过确定在与农药溶液孵育时获得的酶氧化氧化的电流降低,对分析物对ACHE生物传感器的抑制作用进行了评价,并且达到了立法限制下调(10 ppb)的床。此外,在优化的预处理方案之后,在悬垂的橄榄油样品中评估了生物传感器的性能,其掺入碳呋喃和氯吡啶酚,具有非常令人满意的恢复值。

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