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Impedance Biosensors: Applications to Sustainabilityand Remaining Technical Challenges

机译:阻抗生物传感器:可持续性应用和仍然存在的技术挑战

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摘要

Due to their all-electrical nature, impedance biosensors have significant potential for use as simple and portable sensors for environmental studies and environmental monitoring. Detection of two endocrine-disrupting chemicals (EDC), norfluoxetine and BDE-47, is reported here by impedance biosensing, with a detection limit of 8.5 and 1.3 ng/mL for norfluoxetine and BDE-47, respectively. Although impedance biosensors have been widely studied in the academic literature, commercial applications have been hindered by several technical limitations, including possible limitations to small analytes, the complexity of impedance detection, susceptibility to nonspecific adsorption, and stability of biomolecule immobilization. Recent research into methods to overcome these obstacles is briefly reviewed. New results demonstrating antibody regeneration atop degenerate (highly doped) Si are also reported. Using 0.2 M KSCN and 10 mM HF for antibody regeneration, peanut protein Ara h 1 is detected daily during a 30 day trial.
机译:由于其全电性质,阻抗生物传感器具有巨大的潜力,可以用作环境研究和环境监测的简单便携式传感器。据报道,通过阻抗生物传感检测了两种干扰内分泌的化学物质(EDC),诺氟西汀和BDE-47,诺氟西汀和BDE-47的检出限分别为8.5和1.3 ng / mL。尽管在学术文献中已经对阻抗生物传感器进行了广泛的研究,但是商业应用已受到多种技术限制的阻碍,包括对小分析物的可能限制,阻抗检测的复杂性,对非特异性吸附的敏感性以及生物分子固定的稳定性。简要回顾了克服这些障碍的方法的最新研究。还报道了新的结果,表明在简并的(高掺杂的)Si上抗体再生。使用0.2 M KSCN和10 mM HF进行抗体再生,在30天的试验中每天检测到花生蛋白Ara h 1。

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