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Electric Bio-Chips for Rapid and Quantitative Detection of Specific Biological Materials.

机译:电动生物芯片,用于快速定量检测特定生物材料。

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摘要

Although many sophisticated methods for specific detection of a biological material (from cells, through viruses to nucleic acids and proteins) are available, there is still a need for their improvement. Particularly, an optimal method should be sensitive, rapid and quantitative. However, it appears that traditional molecular biology procedures are often either too long or semi-quantitative at best. This makes particular problems in medical and biotechnological approaches, where rapid and quantitative assays are required for either detection of specific pathogens or continuous monitoring of biotechnological processes (e.g. production of certain components by microbes in bio-reactors or detection of bacteriophage contamination in bacterial cultures). In this review, we present a recently developed nanotechnique of electric bio-chips, which appears to be suitable for rapid and quantitative detection of various biological materials. One of variants of this technique is based on miniaturized amperometric biosensor devices that enable evaluation of biomolecular interactions by measuring the redox recycling of enzymatic reaction products. Electric bio-chips were reported to be useful for detection and quantification of both biological macromolecules (nucleic acids and proteins) and microorganisms (bacteria and viruses). Thus, it appears that this technique may be successfully employed in various bio-medical and biotechnological applications.
机译:尽管有许多用于生物材料特异性检测的复杂方法(从细胞,通过病毒到核酸和蛋白质),但仍需要对其进行改进。特别地,最佳方法应该灵敏,快速且定量。但是,看来传统的分子生物学程序通常太长或半定量。这在医学和生物技术方法中造成了特别的问题,其中需要快速定量的检测来检测特定病原体或持续监测生物技术过程(例如,生物反应器中的微生物产生某些成分或检测细菌培养物中的噬菌体污染) 。在本文中,我们介绍了一种最新开发的电生物芯片纳米技术,该技术似乎适用于各种生物材料的快速定量检测。该技术的变体之一是基于小型安培生物传感器设备,该设备能够通过测量酶促反应产物的氧化还原循环来评估生物分子相互作用。据报道,电生物芯片可用于检测和定量生物大分子(核酸和蛋白质)和微生物(细菌和病毒)。因此,看来该技术可以成功地用于各种生物医学和生物技术应用中。

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