首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Screen printed electrode-based biosensor functionalized with magnetic cobalt/single-chain antibody fragments for cocaine biosensing in different matrices
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Screen printed electrode-based biosensor functionalized with magnetic cobalt/single-chain antibody fragments for cocaine biosensing in different matrices

机译:用磁性钴/单链抗体片段官能化的丝网印刷电极基生物传感器,用于不同矩阵中可卡因生物溶解的磁性钴/单链抗体片段

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摘要

On-site detection of substance abuse is an important approach in the preventive and intervention protocols implementations. It is known that the traditional methods are heavy, time-consuming, and need a high level of logistical requirements. As such, biosensors represent great potential to simplify and improve substance abuse detection. In this study, we have designed a functionalized screen-printed electrode (SPE) electrochemical biosensor with cobalt oxide nanoparticles and single-chain antibody fragments (scFvs) for cocaine detection. Different electrochemical techniques such as differential pulse voltammetry, cyclic voltammetry, and electrochemical impedance spectrometry were used to examine the functionality of the designed biosensor. Furthermore, SEM observations were performed to observe the surface changes after functionalization. The results showed that the linearity ranged between 5.0 and 250 ng/mL and a detection limit of 3.6 ng/mL (n = 6). These results were compared to results obtained from Q-TOF/MS where four different matrices (serum, sweat, urine, and saliva) were spiked with 100 ng/mL cocaine and were analyzed by both methods (Biosensor and Q-TOF/MS). Results showed a higher performance of the biosensor compared to traditional methods. In addition, the selectivity of the biosensor was shown in the presence of different interferents where the designed platform showed a specific response to only cocaine. In conclusion, the designed biosensor proposes great potential for portable and on-site substance abuse detection in addition to boasting the capability of reuse of the SPE and thus, reducing the costs related to such applications.
机译:现场检测物质滥用是预防性和干预协议实施中的重要方法。众所周知,传统方法重大,耗时,需要高水平的后勤要求。因此,生物传感器代表了简化和改善药物滥用检测的巨大潜力。在该研究中,我们设计了具有用于可卡因检测的氧化钴纳米粒子和单链抗体片段(SCFV)的官能化的丝网印刷电极(SPE)电化学生物传感器。使用差分脉冲伏安法,循环伏安法和电化学阻抗光谱法等不同的电化学技术来检查设计的生物传感器的功能。此外,进行SEM观察以观察功能化后的表面变化。结果表明,线性程度范围为5.0至250ng / ml,检出限为3.6ng / ml(n = 6)。将这些结果与从Q-ToF / MS获得的结果进行比较,其中四种不同的基质(血清,汗液,尿液和唾液)用100ng / ml可卡因掺入,并通过两种方法(生物传感器和Q-TOF / MS)分析。结果表明,与传统方法相比,生物传感器的性能更高。此外,在不同干扰器的存在下显示了生物传感器的选择性,其中设计的平台显示对仅可卡因的特定反应。总之,设计的生物传感器还提出了便携式和现场药物滥用检测的潜力,除了吹嘘重复使用SPE的能力,从而降低了与此类应用相关的成本。

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