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首页> 外文期刊>biotechnology progress >Flow Injection Analysis of Glucose, Fructose, and Sucrose Using a Biosensor Constructed with PermeabilizedZymomonas mobilisand Invertase
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Flow Injection Analysis of Glucose, Fructose, and Sucrose Using a Biosensor Constructed with PermeabilizedZymomonas mobilisand Invertase

机译:使用用透化酶和转化酶构建的生物传感器对葡萄糖、果糖和蔗糖进行流样分析

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AbstractCells ofZymomonas mobilispossessing glucose‐fructose oxidoreductase and glucono‐lactonase were permeabilized with toluene and co‐immobilized with invertase within a gelatin membrane. This membrane was coated over a pH electrode, and the resulting biosensor was placed in a flow‐through cell to develop a flow injection analysis (FIA) system for the specific determination of glucose, fructose, and sucrose. Peak height resulting from the production of hydrogen ion was correlated with sugar concentration, and the effect of operating variables on the response characteristics of the FIA system was investigated on the basis of theoretical and experimental analyses. Under the optimized conditions, the calibration curves for glucose, fructose, and sucrose were linear up to 8, 80, and 60 g/L, respectively. The FIA system was applied to the online monitoring of glucose production in the enzymatic hydrolysis of cellulose, and the glucose concentrations determined using the FIA system coincided well with those determined by the conventional enzymatic
机译:摘要将葡萄糖-果糖氧化还原酶和葡萄糖-内酰胺酶的酶单胞菌细胞用甲苯透化,并与转化酶共固定在明胶膜内。将该膜涂覆在pH电极上,并将所得生物传感器置于流通池中,以开发用于特异性测定葡萄糖、果糖和蔗糖的流样分析(FIA)系统。氢离子产生的峰高与糖浓度相关,并在理论和实验分析的基础上研究了操作变量对FIA系统响应特性的影响。在优化条件下,葡萄糖、果糖和蔗糖的校准曲线呈线性,分别达到8、80和60 g/L。将FIA系统应用于纤维素酶解过程中葡萄糖产生的在线监测,使用FIA系统测定的葡萄糖浓度与常规酶解测定的葡萄糖浓度吻合良好

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