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Abstract: The aim of this study was to create a laboratory model of an amperometric microbial biosensor for maltose quantification in the presence and absence of starch and to estimate the use of the model in the study of maltase activity of the culture-receptor. The biosensor for maltose was developed on the basis of a Clark-type oxygen electrode, coupled with a bioreceptor, which contained bacterial cells immobilized on the membrane. The determination of maltose concentration was based on measuring the rate of electrode current change in response to addition of the analyte. The detection limit of the biosensor was 1 μM maltose, a linear interval of standard curve was observed from 14 μM up to 1.9 mM of maltose. The microbial biosensor demonstrated good sensitivity to maltose, 36.02 nA (M-s)-1. Combination of bioreceptors on the basis of fungus and bacterium allowed of using the biosensor for quantification of maltose in the presence of starch. Changes in metabolism of the culture-receptor had an effect on the biosensor response. It indicated that the developed model was a tool of simple construction and easy-to-use in the study of maltase activity of the immobilized culture-receptor.
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篇名 Biosensor for maltose quantification and estimation of maltase activity
来源期刊 生物芯片进展(英文) 学科 医学
关键词 AMPEROMETRIC MICROBIAL BIOSENSOR Clark-type oxygen ELECTRODE MALTOSE determination maltase STARCH
年,卷(期) 2019,(1) 所属期刊栏目
研究方向 页码范围 2-11
页数 10页 分类号 R
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AMPEROMETRIC
MICROBIAL
BIOSENSOR
Clark-type
oxygen
ELECTRODE
MALTOSE
determination
maltase
STARCH
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生物芯片进展(英文)
半年刊
2630-4511
50 Chin Swee Road, #
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