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Stochastic sensors

机译:随机传感器

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摘要

Stochastic sensors have been the subject of considerable recent interest as a result of their ability for reconfigurable, rapid, multi-analyte detection as well as their potential for sequencing DNA. These sensors are created by placing a nanometre-sized pore in an insulating membrane and measuring the ionic transport through the pore in the presence of the molecules of interest. The magnitude, duration, and rates of occurrence of the resultant current blockades allow rapid determination of analyte concentration as well as discrimination between similar molecular species. The bulk of the work in this nascent field has been focused on biologically-based stochastic sensors using protein pores and lipid membranes, although hybrid and completely non-biological systems are also the subject of active investigation. I review this work as well as recent efforts to extend these systems and translate them into usable laboratory and clinical tools.
机译:随机传感器由于其可重构,快速,多分析物检测的能力以及其对DNA测序的潜力,最近引起了人们的极大关注。这些传感器是通过在绝缘膜中放置一个纳米级的孔,并在存在目标分子的情况下测量通过孔的离子传输来创建的。所产生的电流阻滞的强度,持续时间和发生率可以快速确定分析物的浓度,并可以区分相似的分子种类。尽管混合系统和完全非生物系统也是积极研究的主题,但在这个新兴领域的大部分工作都集中在使用蛋白质孔和脂质膜的基于生物的随机传感器上。我回顾了这项工作以及扩展这些系统并将其转换为可用的实验室和临床工具的最新努力。

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