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MAK067

Sigma-Aldrich

Malate Assay Kit

sufficient for 100 colorimetric tests

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About This Item

Code UNSPSC :
12161503
Nomenclature NACRES :
NA.84

Utilisation

sufficient for 100 colorimetric tests

Méthode de détection

colorimetric

Température de stockage

−20°C

Description générale

L-Malate is a tricarboxylic acid cycle intermediate and a critical component of the malate-aspartate shuttle. The Malate-aspartate shuttle is required for transporting reducing equivalents across the mitochondrial membrane for use in oxidative phosphorylation. In lower organisms, malate is converted to lactate during malolactic fermentation with the formation of CO2. Malate is frequently used as an additive in the food and pharmaceutical industries, so quantitating malate is important in the manufacturing of beer, wine, cheese, and fruits. The Malate Assay kit is an easy and sensitive assay to measure the malate level in a variety of samples.

In this kit, malate is oxidized to generate a product specifically detected by colorimetric (450 nm) assay. Typical sensitivities of detection for this kit are 1-35 nmol of malate.

Application

Malate Assay Kit has been used to determine the concentration of malate in samples.

Adéquation

Suitable for the measurement of L(-) Malate level in a variety of samples including tissue, cells and food and beverages (for example beer, wine, cheese and fruit)

Principe

Malate concentration is determined by an enzymatic assay, which results in a colorimetric (450 nm) product, proportional to the malate present. Typical detection range for this kit is 5–25 nmoles of malate.

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Tarif

Pictogrammes

Corrosion

Mention d'avertissement

Danger

Mentions de danger

Classification des risques

Eye Dam. 1 - Skin Corr. 1B

Code de la classe de stockage

8A - Combustible corrosive hazardous materials

Classe de danger pour l'eau (WGK)

WGK 3


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Articles

We presents an article about the Warburg effect, and how it is the enhanced conversion of glucose to lactate observed in tumor cells, even in the presence of normal levels of oxygen. Otto Heinrich Warburg demonstrated in 1924 that cancer cells show an increased dependence on glycolysis to meet their energy needs, regardless of whether they were well-oxygenated or not.

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