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MAK187

Sigma-Aldrich

Total Antioxidant Capacity Assay Kit

Sufficient for 100 Colorimetric tests

Synonym(s):
TAC Assay Kit
NACRES:
NA.84

usage

sufficient for 100 colorimetric tests

application(s)

cosmetics
environmental
food and beverages

detection method

colorimetric

relevant disease(s)

endocrinological disorders, diabetes; neurological disorders; cancer; cardiovascular diseases; rheumatological diseases

storage temp.

2-8°C

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This Item
MAK334615700MAK085
Antioxidant Assay Kit sufficient for 100 colorimetric tests

Sigma-Aldrich

MAK334

Antioxidant Assay Kit

detection method

colorimetric

detection method

colorimetric

detection method

colorimetric

detection method

colorimetric, fluorometric

storage temp.

2-8°C

storage temp.

−20°C

storage temp.

2-8°C

storage temp.

−20°C

application(s)

cosmetics
environmental
food and beverages

application(s)

cosmetics
food and beverages
pharmaceutical

application(s)

-

application(s)

-

relevant disease(s)

endocrinological disorders, diabetes; neurological disorders; cancer; cardiovascular diseases; rheumatological diseases

relevant disease(s)

neurological disorders

relevant disease(s)

-

relevant disease(s)

endocrinological disorders, diabetes; neurological disorders; cancer; cardiovascular diseases

General description

Oxidants, such as reactive oxygen species (ROS) and reactive nitrogen species (RNS), can generate free radicals that can cause severe oxidative damage to cellular lipids, membranes, proteins, and DNA. Antioxidants can scavenge these free radicals and prevent cellular oxidative stress by enzymatic andnon-enzymatic mechanisms. Enzyme systems that function as antioxidants include catalase and peroxidase. Tocopherols, carotenes, vitamin A, and ubiquinols function as lipid-soluble antioxidants; whereas, glutathione and ascorbate are some of the water-soluble antioxidants. Measurement of the total non-enzymatic antioxidant capacity (TAC) of biological samples is indicative of their ability to counteract oxidative stress-induced damage in cells. TAC is used to provide insights into the development and treatment of oxidative-stress related disorders.

In the Total Antioxidant Capacity Assay Kit, either the concentration of the combination of both small molecule and protein antioxidants, or the concentration of only small molecule antioxidants can be determined. Cu2+ ion is converted to Cu+ by both small molecules and proteins. However, the use of the Protein Mask prevents Cu2+ reduction by protein, enabling the analysis of only the small molecule antioxidants. The reduced Cu+ ion chelates with a colorimetric probe, giving a broad absorbance peak at ~570 nm, which is proportional to the total antioxidant capacity. The kit gives antioxidant capacity in Trolox equivalents (ranging from 4-20 nmole/well). Trolox, a water-soluble vitamin E analog, serves as an antioxidant standard.

Application

Total antioxidant capacity assay kit has been used to determine total antioxidant capacity of leaf tissue samples.

Suitability

This kit is suitable for the detection of small molecule and protein antioxidants in cell and tissue lysates, media, or in biological fluids such as urine, plasma, and serum.

Principle

In the Total Antioxidant Capacity Assay Kit, either the concentration of the combination of both small molecule and protein antioxidants, or the concentration of only small molecule antioxidants can be determined. Cu2+ ion is converted to Cu+ by both small molecules and proteins. However, the use of the Protein Mask prevents Cu2+ reduction by protein, enabling the analysis of only the small molecule antioxidants. The reduced Cu+ ion chelates with a colorimetric probe, giving a broad absorbance peak at ~570 nm, which is proportional to the total antioxidant capacity. The kit gives antioxidant capacity in Trolox equivalents (ranging from 4-20 nmole/well). Trolox, a water-soluble vitamin E analog, serves as an antioxidant standard.

Kit Components Only

Product No.
Description

  • Cu2+ Reagent

  • Assay Diluent

  • Protein Mask

  • Trolox Standard, 1 μmole

replaced by

Product No.
Description
Pricing

Pictograms

CorrosionEnvironment

Signal Word

Danger

Hazard Statements

Hazard Classifications

Aquatic Acute 1 - Aquatic Chronic 1 - Eye Dam. 1

Storage Class Code

10 - Combustible liquids

WGK

WGK 3


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Effects of xenobiotics on total antioxidant capacity
Ferrari C K B.
Interdisciplinary Toxicology, 5(3), 117-122 (2012)
Distribution of lipid-soluble antioxidants in lipoproteins from healthy subjects. I. Correlation with plasma antioxidant levels and composition of lipoproteins.
Perugini C, et al.
Pharmacological Research, 41(1), 55-65 (2000)
High light bio-fortification stimulates de novo synthesis of resveratrol in Diplotaxis tenuifolia (wild rocket) micro-greens.
Loedolff B, et al.
Functional Foods in Health and Disease, 7(11), 859-872 (2017)
Alaa El-Din H Sayed et al.
Mutation research, 822, 34-40 (2017-08-29)
Although, silver nanoparticles (AgNPs) are used in many different products, little information is known about their toxicity in tropical fish embryos. Therefore, this study evaluated the developmental toxicity of waterborne silver nanoparticles in embryos of Clarias gariepinus. Embryos were treated
Niclas U Lundsgaard et al.
Conservation physiology, 8(1), coaa002-coaa002 (2020-05-30)
Multiple environmental changes are thought to be contributing to the widespread decline of amphibians in montane regions, but interactions between drivers of decline are not well understood. It has been proposed previously that elevated ultraviolet-B radiation (UBVR) and low temperatures

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