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微生物传感器在生化需氧量快速测定中的应用:方法、趋势与发展前景。

Microbial Biosensors for Rapid Determination of Biochemical Oxygen Demand: Approaches, Tendencies and Development Prospects.

机构信息

Laboratory of Biologically Active Compounds and Biocomposites, Federal State Budgetary Educational Establishment of Higher Education "Tula State University", 300012 Tula, Russia.

Pushchino Center for Biological Research of the Russian Academy of Sciences, G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, 142290 Pushchino, Russia.

出版信息

Biosensors (Basel). 2022 Oct 8;12(10):842. doi: 10.3390/bios12100842.

Abstract

One of the main indices of the quality of water is the biochemical oxygen demand (BOD). A little over 40 years have passed since the practical application of the first microbial sensor for the determination of BOD, presented by the Japanese professor Isao Karube. This time span has brought new knowledge to and practical developments in the use of a wide range of microbial cells based on BOD biosensors. At present, this field of biotechnology is becoming an independent discipline. The traditional BOD analysis (BOD) has not changed over many years; it takes no less than 5 days to carry out. Microbial biosensors can be used as an alternative technique for assessing the BOD attract attention because they can reduce hundredfold the time required to measure it. The review examines the experience of the creation and practical application of BOD biosensors accumulated by the international community. Special attention is paid to the use of multiple cell immobilization methods, signal registration techniques, mediators and cell consortia contained in the bioreceptor. We consider the use of nanomaterials in the modification of analytical devices developed for BOD evaluation and discuss the prospects of developing new practically important biosensor models.

摘要

水的质量的主要指标之一是生化需氧量(BOD)。自日本教授 Isao Karube 提出用于测定 BOD 的第一个微生物传感器以来,已经过去了四十多年。这段时间为基于 BOD 生物传感器的各种微生物细胞的使用带来了新的知识和实际发展。目前,该生物技术领域正在成为一个独立的学科。传统的生化需氧量分析(BOD)多年来没有变化;进行分析需要不少于 5 天的时间。微生物生物传感器可以作为评估 BOD 的替代技术引起关注,因为它们可以将测量所需的时间减少百倍。本综述考察了国际社会在创建和实际应用 BOD 生物传感器方面积累的经验。特别关注生物感受器中使用的多种细胞固定化方法、信号记录技术、介体和细胞联合体。我们考虑了在用于 BOD 评估的分析设备的改性中使用纳米材料,并讨论了开发新的实际重要生物传感器模型的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7ec/9599453/4b7e1c0cd87b/biosensors-12-00842-g001.jpg

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