Enzyme sensor

5236567
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Inventors

Nanba, Akira
Fukaya, Masahiro
Okumura, Hajime
Kawamura, Yoshiya

Application #

528088

Filed

May-24-1990

Published

Aug-17-1993

Current US Class

204/403.1
204/403.15
204/418
435/287.9
435/289.1
435/299.1
435/817
436/518
436/806

International Classes

G01N 027/26

Field of Search

204/403 204/153.12 204/416 204/418 204/419 435/817 435/288 435/291 436/518 436/806

Assignee

Nakano Vinegar Co., Ltd. (Handa, JP)

Examiners

Niebling; John

Attorney, Agent or Firm

Sherman and Shalloway

US Patent References

4224125   Enzyme electrode
4490464   Electrode for the el...
4545382   Sensor for compon...
4704193   Covalently coupled...
4711245   Sensor for compon...
4897173   Biosensor and meth...

Referenced by:

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Citation

Cite This Patent

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Abstract
An enzyme sensor, which comprises an enzyme-modified electrode and a counter electrode, wherein the enzyme-modified electrode comprises, as electrode components, an enzyme and/or an enzyme-containing substance and mediator. The enzyme sensor is useful in analysis, such as the analysis of compounds in foods or components in the living body, the diagnosis of diseases and the control of reaction processes. The preparation of the enzyme-modified electrode is also described.
 
Claims
We claim:

1. An enzyme sensor which comprises an enzyme-modified electrode and a counter electrode, wherein the enzyme-modified electrode comprises, as electrode components, a combination of (i) an enzyme or an enzyme-containing substance or an enzyme and an enzyme-containing substance and (ii) a mediator, wherein the enzyme and mediator are, respectively: aldehyde dehydrogenase and p-benzoquinone; fructose dehydrogenase and dimethylferrocene; sorbitol dehydrogenase and dimethyl ferrocene; glycerol dehydrogenase and potassium ferricyanide; or alcohol dehydrogenase and a complex of potassium ferricyanide and a cationic surface-active agent.

2. A sensor according to claim 1, wherein the enzyme-containing substance is selected from the group consisting of cells of a microorganism producing said enzyme, a culture medium and disrupted cells of a microorganism producing said enzyme, fractionation components of disrupted cells of a microorganism producing said enzyme, cellular extracts of disrupted cells of a microorganism producing said enzyme, cell membrane fraction of disrupted cells of a microorganism producing said enzyme and a crude enzyme from disrupted cells of a microorganism producing said enzyme.



Description
FIELD OF THE INVENTION

The present invention relates to an enzyme sensor used for measurement of several components in a solution. More particularly, the present invention relates to "Enzyme sensor, which comprises both an enzyme-modified electrode and a counter electrode, said enzyme-modified electrode comprising, as electrode components, an enzyme and/or an enzyme-containing substance and a mediator."

According to the present invention, an object component can be measured easily and rapidly. Hence, the present invention is not only useful as a measurement sensor in the areas of fermentation industry and chemical industry, but is also useful as a measurement sensor of several biological components in a sample from the living body, in the area of clinical tests, and can be used widely for diagnosis and examinations of several diseases, too.

BACKGROUND OF THE INVENTION

Enzyme sensor, in which the high specificity of an enzyme toward its substrate is used, is found to be useful for measurement of several compounds, and the enzyme sensor has already been practiced in quantitative analyses of glucose, etc. The enzyme sensor now practiced, in which an enzyme possessing high specificity toward a substance to be measured is immobilized, is used for determination of an object substance in a sample, by electrochemically detecting an amount of hydrogen peroxide formed, or of oxygen consumed when an enzyme acts on an object substance in a sample. Accordingly, enzymes to be employed in enzyme sensors of this type are restricted to oxidation enzymes, so-called "oxidases," which form hydrogen peroxide.
 
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