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生物传感器技术在医学中的应用:从生化标志物检测到分子靶标研究(综述)。

Biosensor Technologies in Medicine: from Detection of Biochemical Markers to Research into Molecular Targets (Review).

机构信息

Leading Researcher, Laboratory of Molecular Microbiology; G.P. Somov Institute of Epidemiology and Microbiology, 1 Selskaya St., Vladivostok, 690087, Russia.

Researcher, Laboratory of Molecular Microbiology; G.P. Somov Institute of Epidemiology and Microbiology, 1 Selskaya St., Vladivostok, 690087, Russia.

出版信息

Sovrem Tekhnologii Med. 2021;12(6):70-83. doi: 10.17691/stm2020.12.6.09. Epub 2020 Dec 28.

Abstract

Infections are a major cause of premature death. Fast and accurate laboratory diagnostics of infectious diseases is a key condition for the timely initiation and success of treatment. Potentially, it can reduce morbidity, as well as prevent the outbreak and spread of dangerous epidemics. The traditional methods of laboratory diagnostics of infectious diseases are quite time- and labour-consuming, require expensive equipment and trained personnel, which is crucial within limited resources. The fast biosensor-based methods that combine the diagnostic capabilities of biomedicine with modern technological advances in microelectronics, optoelectronics, and nanotechnology make an alternative. The modern achievements in the development of label-free biosensors make them promising diagnostic tools that combine rapid detection of specific molecular markers, simplicity, ease-of-use, efficiency, accuracy, and cost-effectiveness with the tendency to the development of portable platforms. These qualities exceed the generally accepted standards of microbiological and immunological diagnostics and open up broad prospects for using these analytical systems in clinical practice directly at the site of medical care provision (point-of-care, POC concept). A wide variety of modern biosensor designs are based on the use of diverse formats of analytical and technological strategies, identification of various regulatory and functional molecular markers associated with infectious pathogens. The solution to the existing problems in biosensing will open up great prospects for these rapidly developing diagnostic biotechnologies.

摘要

感染是导致过早死亡的主要原因。快速、准确的传染病实验室诊断是及时开始和成功治疗的关键条件。它有可能降低发病率,预防危险传染病的爆发和传播。传染病实验室诊断的传统方法非常耗时耗力,需要昂贵的设备和经过培训的人员,这在资源有限的情况下至关重要。基于快速生物传感器的方法将生物医学的诊断能力与微电子学、光电子学和纳米技术的现代技术进步相结合,提供了一种替代方法。无标记生物传感器的现代发展成就使它们成为有前途的诊断工具,它们将快速检测特定分子标记物的能力与简单、易用、高效、准确和具有成本效益的特性相结合,并具有向便携式平台发展的趋势。这些特性超过了微生物学和免疫学诊断的普遍接受标准,并为在临床实践中直接在医疗保健点(POC 概念)使用这些分析系统开辟了广阔的前景。各种现代生物传感器设计都基于使用不同格式的分析和技术策略,识别与传染病病原体相关的各种调节和功能分子标记物。解决生物传感器中存在的问题将为这些快速发展的诊断生物技术开辟广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc93/8596237/e4181abc1693/STM-12-6-09-f1.jpg

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