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Developing nucleic acid-based electrical detection systems

机译:开发基于核酸的电检测系统

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摘要

Development of nucleic acid-based detection systems is the main focus of many research groups and high technology companies. The enormous work done in this field is particularly due to the broad versatility and variety of these sensing devices. From optical to electrical systems, from label-dependent to label-free approaches, from single to multi-analyte and array formats, this wide range of possibilities makes the research field very diversified and competitive. New challenges and requirements for an ideal detector suitable for nucleic acid analysis include high sensitivity and high specificity protocol that can be completed in a relatively short time offering at the same time low detection limit. Moreover, systems that can be miniaturized and automated present a significant advantage over conventional technology, especially if detection is needed in the field. Electrical system technology for nucleic acid-based detection is an enabling mode for making miniaturized to micro- and nanometer scale bio-monitoring devices via the fusion of modern micro- and nanofabrication technology and molecular biotechnology. The electrical biosensors that rely on the conversion of the Watson-Crick base-pair recognition event into a useful electrical signal are advancing rapidly, and recently are receiving much attention as a valuable tool for microbial pathogen detection. Pathogens may pose a serious threat to humans, animal and plants, thus their detection and analysis is a significant element of public health. Although different conventional methods for detection of pathogenic microorganisms and their toxins exist and are currently being applied, improvements of molecular-based detection methodologies have changed these traditional detection techniques and introduced a new era of rapid, miniaturized and automated electrical chip detection technologies into pathogen identification sector. In this review some developments and current directions in nucleic acid-based electrical detection are discussed.
机译:基于核酸的检测系统的开发是许多研究小组和高科技公司的主要重点。在这一领域所做的巨大工作特别是由于这些传感设备的广泛用途和多样性。从光学系统到电气系统,从不依赖标签的方法到不依赖标签的方法,从单一分析物到多分析物和阵列格式,这种广泛的可能性使研究领域非常多样化和竞争。对适用于核酸分析的理想检测器的新挑战和要求包括高灵敏度和高特异性方案,可以在相对较短的时间内完成同时提供较低的检测限。此外,可以小型化和自动化的系统具有优于常规技术的显着优势,尤其是在现场需要检测的情况下。通过基于现代的微纳米制造技术和分子生物技术的融合,用于基于核酸的检测的电气系统技术是一种使微型化至微米和纳米级生物监测设备的实现方式。依赖于将Watson-Crick碱基对识别事件转换为有用的电信号的生物电传感器正在迅速发展,最近作为一种微生物病原体检测的有价值的工具受到了广泛的关注。病原体可能对人类,动植物构成严重威胁,因此对其进行检测和分析是公共卫生的重要组成部分。尽管存在并正在应用不同的常规方法来检测病原微生物及其毒素,但是基于分子的检测方法的改进已经改变了这些传统的检测技术,并将快速,小型化和自动化的电子芯片检测技术引入了病原体鉴定的新时代部门。在这篇综述中,讨论了基于核酸的电检测的一些发展和当前方向。

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