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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Integrated electrochemical DNA biosensors for lab-on-a-chip devices.
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Integrated electrochemical DNA biosensors for lab-on-a-chip devices.

机译:用于芯片实验室设备的集成电化学DNA生物传感器。

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摘要

Analytical devices able to perform accurate and fast automatic DNA detection or sequencing procedures have many potential benefits in the biomedical and environmental fields. The conversion of biological or biochemical responses into quantifiable optical, mechanical or electronic signals is achieved by means of biosensors. Most of these transducing elements can be miniaturized and incorporated into lab-on-a-chip devices, also known as Micro Total Analysis Systems. The use of multiple DNA biosensors integrated in these miniaturized laboratories, which perform several analytical operations at the microscale, has many cost and efficiency advantages. Tiny amounts of reagents and samples are needed and highly sensitive, fast and parallel assays can be done at low cost. A particular type of DNA biosensors are the ones used based on electrochemical principles. These sensors offer several advantages over the popular fluorescence-based detection schemes. The resulting signal is electrical and can be processed by conventional electronics in a very cheap and fast manner. Furthermore, the integration and miniaturization of electrochemical transducers in a microsystem makes easier its fabrication in front of the most common currently used detection method. In this review, different electrochemical DNA biosensors integrated in analytical microfluidic devices are discussed and some early stage commercial products based on this strategy are presented.
机译:能够执行准确,快速的自动DNA检测或测序程序的分析设备在生物医学和环境领域具有许多潜在的好处。通过生物传感器将生物或生化反应转换为可量化的光学,机械或电子信号。这些转导元件中的大多数都可以小型化并整合到芯片实验室设备中,也称为Micro Total Analysis Systems。这些小型实验室中集成的多个DNA生物传感器的使用在微观规模上执行多种分析操作,具有许多成本和效率优势。需要极少量的试剂和样品,并且可以低成本进行高度灵敏,快速和平行的分析。 DNA生物传感器的一种特殊类型是基于电化学原理的传感器。与流行的基于荧光的检测方案相比,这些传感器具有许多优势。产生的信号是电信号,可以通过常规电子设备以非常便宜和快速的方式进行处理。此外,微系统中电化学换能器的集成和小型化使其更易于在当前最常用的检测方法之前进行制造。在这篇综述中,讨论了集成在分析微流体设备中的不同电化学DNA生物传感器,并提出了基于该策略的一些早期商业产品。

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