D-果糖脱氢酶结构式
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常用名 | D-果糖脱氢酶 | 英文名 | D-Fructose Dehydrogenase |
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| CAS号 | 37250-85-4 | 分子量 | N/A | |
| 密度 | N/A | 沸点 | N/A | |
| 分子式 | N/A | 熔点 | N/A | |
| MSDS | 中文版 美版 | 闪点 | N/A |
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A lactulose sensor based on coupled enzyme reactions with a ring electrode fabricated from tetrathiafulvalen-tetracyanoquinodimetane.
Biosens. Bioelectron. 13(9) , 995-1005, (1998) A dual enzyme electrode is explored for measuring lactulose in milk. A ring electrode (diameter = 3 mm; ring width = 10-20 microns) is proposed onto which tetrathiafulvalen-tetracyanoquinodimetane (TTF-TCNQ) salt was physically packed. The electrode is a band... |
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Amperometric fructose sensor based on ferrocyanide modified screen-printed carbon electrode.
Talanta 88 , 432-438, (2012) The first fructose sensor using a commercial screen-printed ferrocyanide/carbon electrodes (SPFCE) is reported here. The ferrocyanide is included in the carbon ink of the commercial screen-printed carbon electrode. The immobilization of enzyme d-fructose dehy... |
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Determination of seminal fructose using D-fructose dehydrogenase.
Clin. Chim. Acta 151(3) , 307-10, (1985)
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Modified gold surfaces by poly(amidoamine) dendrimers and fructose dehydrogenase for mediated fructose sensing.
Talanta 87 , 67-73, (2011) An electrochemical biosensor for detection of fructose in food samples was developed by immobilization of fructose dehydrogenase (FDH) on cysteamine and poly(amidoamine) dendrimers (PAMAM)-modified gold electrode surface. Electrochemical analysis was carried ... |
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Coupled enzymatic assay for the determination of sucrose.
Anal. Biochem. 244(1) , 103-9, (1997) An enzymatic spectrophotometric assay for the determination of sucrose in unextracted samples of serum and urine was developed. The method entailed the coupling of invertase-catalyzed sucrose hydrolysis with a fructose dehydrogenase-catalyzed oxidation of the... |
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Direct spectrophotometric determination of serum fructose in pancreatic cancer patients.
Pancreas 38(6) , 706-12, (2009) We sought to develop an assay to measure circulating fructose concentrations in pancreatic cancer patients.Using fructose dehydrogenase-catalyzed conversion of d-fructose to 5-ketofructose, followed by quantitation of MTT [3-(4,5-dimethylthiaze-syl)-2,5-diphe... |
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Evaluation of a new automated, enzymatic inulin assay using D-fructose dehydrogenase.
Clin. Exp. Nephrol. 13(4) , 341-9, (2009) Inulin clearance (Cin) is widely considered to be a gold-standard assessment of glomerular filtration rate (GFR). Although inulin concentrations are commonly determined by the anthrone method, this method has several disadvantages, including a hazardous heati... |
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Development of a rapid, quantitative glucosyltransferase assay based on a screen-printed fructose enzyme electrode and application to optimization studies on gtfD expression in recombinant Escherichia coli.
Biotechnol. Bioeng. 91(2) , 154-61, (2005) A biosensor for fructose determination was used as basis of an assay for the determination of glucosyltransferase (GTF) activities and applied to monitoring recombinant enzyme production. GTFs catalyze the synthesis of glucans from sucrose leading to the rele... |
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Ferrocene-Mediated carbon paste electrode modified with D-fructose dehydrogenase for batch mode measurement of D-fructose.
Appl. Biochem. Biotechnol. 89(1) , 55-66, (2000) A mediated modified carbon paste and renewable surface electrode for fructose amperometric measurement based on D-fructose dehydrogenase (FDH) was prepared and optimized. Commercially available ferrocene (FcH) and hydroxymethyl ferrocene (FcCH2OH) were used a... |
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Enzymatic studies on the oxidation of sugar and sugar alcohol. I. Purification and properties of particle-bound fructose dehydrogenase.
J. Biochem. 61(5) , 636-46, (1967)
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