School of Bioscience and Biotechnology, Tokyo University of Technology, Hachioji, Tokyo 1920982, Japan.
Adv Biochem Eng Biotechnol. 2010;118:1-30. doi: 10.1007/10_2009_19.
Since the first microbial cell sensor was studied by Karube et al. in 1977, many types of microbial cell sensors have been developed as analytical tools. The microbial cell sensor utilizes microbes as a sensing element and a transducer. The characteristics of microbial cell sensors as sensing devices are a complete contrast to those of enzyme sensors or immunosensors, which are highly specific for the substrates of interest, although the specificity of the microbial cell sensor has been improved by genetic modification of the microbe used as the sensing element. Microbial cell sensors have the advantages of tolerance to measuring conditions, a long lifetime, and good cost performance, and have the disadvantage of a long response time. In this review, applications of microbial cell sensors are summarized.
自 1977 年由 Karube 等人首次研究微生物细胞传感器以来,已经开发出许多类型的微生物细胞传感器作为分析工具。微生物细胞传感器利用微生物作为传感元件和换能器。微生物细胞传感器作为传感装置的特性与酶传感器或免疫传感器完全相反,尽管通过对用作传感元件的微生物进行遗传修饰可以提高微生物细胞传感器的特异性。微生物细胞传感器具有对测量条件的耐受性、长寿命和良好的性价比等优点,但响应时间较长是其缺点。本文总结了微生物细胞传感器的应用。