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基于非特异性 DNA zyme 的电化学装置用于高精准度测定 Ca,同时抗 Pb 干扰。

Electrochemical device based on nonspecific DNAzyme for the high-accuracy determination of Ca with Pb interference.

机构信息

State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, PR China.

State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, PR China; State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing 100193, PR China.

出版信息

Bioelectrochemistry. 2021 Aug;140:107732. doi: 10.1016/j.bioelechem.2020.107732. Epub 2020 Dec 29.

Abstract

Calcium is one of the most abundant and indispensable elements in biology, as it is a vital component of nerves, bones, and muscles and maintains the excitability of normal neuromuscular muscles. However, it may be harmful to the human body and even damage the organs if the calcium content exceeds the standard value by several times. To evaluate the level of calcium ions (Ca), an electrochemical biosensor (FET/SWNTs/Cazyme) was developed using a nonspecific DNAzyme with high stability, which combined the unique advantage of field-effect transistors and single-walled carbon nanotubes, while being easy-to-use and having excellent sensitivity. The incubation time and voltage after optimization were 15 min and +0.02 V. The nonspecific DNAzyme-based biosensor was sensitive to Ca, but it was also interfered with by Pb, which affected the detection accuracy. To solve this shortcoming, an electrochemical device was proposed, in which FET/SWNTs/Cazyme combined with other specific biosensors for Pb, and then established some data processing models were established through support vector machine regression (SVMR) and artificial neural network fitting (ANNF). For the optimal SVMR, the electrochemical device can determine the Ca concentration in the range of 7.5-1000 μM with a detection limit of 5.48 μM. Finally, the prepared electrochemical device was employed to detect the Ca in different milk and water samples.

摘要

钙是生物学中最丰富和不可或缺的元素之一,因为它是神经、骨骼和肌肉的重要组成部分,并维持正常神经肌肉的兴奋性。然而,如果钙含量超过标准值数倍,可能对人体有害,甚至损害器官。为了评估钙离子(Ca)的水平,使用具有高稳定性的非特异性 DNA 酶开发了一种电化学生物传感器(FET/SWNTs/Cazyme),该生物传感器结合了场效应晶体管和单壁碳纳米管的独特优势,同时易于使用且具有出色的灵敏度。优化后的孵育时间和电压分别为 15 分钟和+0.02V。基于非特异性 DNA 酶的生物传感器对 Ca 敏感,但也受到 Pb 的干扰,这影响了检测的准确性。为了解决这个缺点,提出了一种电化学装置,其中 FET/SWNTs/Cazyme 与其他用于 Pb 的特定生物传感器结合,然后通过支持向量机回归(SVMR)和人工神经网络拟合(ANNF)建立了一些数据处理模型。对于最佳的 SVMR,电化学装置可以在 7.5-1000μM 的范围内检测 Ca 浓度,检测限为 5.48μM。最后,使用制备的电化学装置检测了不同牛奶和水样品中的 Ca。

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