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Glucose oxidase is found in honey and acts as a natural preservative.
The two most common employed enzymes are glucose oxidase and hexokinase.
Gluconic acid is formed by the actions of an enzyme called glucose oxidase.
This has the advantage of sensitivity over glucose oxidase but is more susceptible to interfering reactions with other substances.
Glucose oxidase, an enzyme which is commonly used in glucose biosensors.
It has even been shown, in the enzyme glucose oxidase, that dioxygen nuclei can tunnel under physiological conditions.
The glucose oxidase binds specifically to β-D-glucopyranose and does not act on α-D-glucose.
The glucose in the blood reacts chemically with an enzyme on the test strip called glucose oxidase.
Beneficial agents include lysozyme, lactoperozidase, glucose oxidase, mutanase, and dextranase.
For some models this element is a plastic test strip with a small spot impregnated with glucose oxidase and other components.
Plasma glucose concentrations were recorded as the mean of six determinations by a glucose oxidase method in each sample.
Glucose oxidase is used in the design of glucose biosensors, due to its high affinity for β-D-glucose.
Hydrogen peroxide is formed in a slow-release manner by the enzyme glucose oxidase present in honey.
The detection of glucose by test strips is based on the enzymatic reaction of glucose oxidase.
Examples include entrapment of enzymes such as glucose oxidase in gel column for use as a bioreactor.
An example of the latter is combined entrapment of glucose oxidase and insulin in a pH-responsive hydrogel.
If the stored honey becomes diluted, the glucose oxidase is re-activated to produce hydrogen peroxide, which also kills microorganisms.
A. niger is also commonly used for the production of native and foreign enzymes, including glucose oxidase and hen egg white lysozyme.
Enzymes such as lysozyme, lactoperoxidase and glucose oxidase are transferred from the tooth pastes to the pellicle.
Amperometric biosensors, in contrast, can utilise only glucose oxidase as a protein, as it is a redox enzyme.
It relied on a thin layer of glucose oxidase on an oxygen of oxygen consumed by the enzyme.
Antibody conjugates of glucose oxidase and to lactoperoxidase have been found to effective in killing tumor cells in vitro.
Researchers studying bio fuel cells have discovered that one particular enzyme, called glucose oxidase, is extremely good at removing electrons from glucose.
Prof Willner explains that, while the enzyme glucose oxidase has performed optimally, the efficiency of the electron-donating enzymes could still be dramatically improved.
A multi-wall platinum substrate, subsequently functionalized by oxidation, helps to allow the effectivity on the control of the glucose oxidase enzymes.