The ferric reducing anti-oxidant power (FRAP) assay involved the following steps: a) preparation of samples, b) reactions and c) finally measuring absorbance of sample and standard at 700 nm using spectrophotometer. The samples were methanolic extract, different fractions (n-hexane, chloroform) and standard ascorbic acid. The solutions prepared were buffer solution (pH 6.6), 1% potassium ferricyanide solution, 10% trichloroacetic acid and 0.1% ferric chloride. Video Clip of Methodology: Ferric reducing anti-oxidant power assay: 21 min 18 sec Full Screen Alternat
An established ferric reducing antioxidant power (FRAP) assay was optimised by preparation of the de...
The study of ascorbic acid as a reducing agent for iron(III) has been investigated in order to obtai...
A comparison was made on the use of two spectrophotometric methods, the ferric reducing antioxidant ...
The ferric reducing anti-oxidant power (FRAP) assay involved the following steps: a) preparation of...
A simple, automated test measuring the ferric reducing ability of plasma, the FRAP assay, is present...
The FRAP reagent contains 2,4,6-tris(2-pyridyl)-s-triazine, which forms a blue–violet complex ion in...
ABSTRACT Medicinal plants have a lot of type antioxidants, mostly polyphenols, flavonoids which exhi...
The ferric reducing antioxidant power (FRAP) assay was recently adapted to a microplate format. Howe...
The ferric reducing antioxidant power (FRAP) assay was recently adapted to a microplate format. Howe...
The existing ferricyanide/Prussian blue assay of reducing capacity measurement was optimized so as t...
Medicinal plants have a lot of type antioxidants, mostly polyphenols, flavonoids which exhibit high ...
An established ferric reducing antioxidant power (FRAP) assay was optimised by preparation of the de...
[[abstract]]Several analytical approaches are available for investigating the antioxidant power for ...
A Ce(IV)-based reducing capacity (CERAC) assay was developed to measure the total antioxidant capaci...
Ferritin plays an important role in iron detoxification and iron storage by converting soluble iron(...
An established ferric reducing antioxidant power (FRAP) assay was optimised by preparation of the de...
The study of ascorbic acid as a reducing agent for iron(III) has been investigated in order to obtai...
A comparison was made on the use of two spectrophotometric methods, the ferric reducing antioxidant ...
The ferric reducing anti-oxidant power (FRAP) assay involved the following steps: a) preparation of...
A simple, automated test measuring the ferric reducing ability of plasma, the FRAP assay, is present...
The FRAP reagent contains 2,4,6-tris(2-pyridyl)-s-triazine, which forms a blue–violet complex ion in...
ABSTRACT Medicinal plants have a lot of type antioxidants, mostly polyphenols, flavonoids which exhi...
The ferric reducing antioxidant power (FRAP) assay was recently adapted to a microplate format. Howe...
The ferric reducing antioxidant power (FRAP) assay was recently adapted to a microplate format. Howe...
The existing ferricyanide/Prussian blue assay of reducing capacity measurement was optimized so as t...
Medicinal plants have a lot of type antioxidants, mostly polyphenols, flavonoids which exhibit high ...
An established ferric reducing antioxidant power (FRAP) assay was optimised by preparation of the de...
[[abstract]]Several analytical approaches are available for investigating the antioxidant power for ...
A Ce(IV)-based reducing capacity (CERAC) assay was developed to measure the total antioxidant capaci...
Ferritin plays an important role in iron detoxification and iron storage by converting soluble iron(...
An established ferric reducing antioxidant power (FRAP) assay was optimised by preparation of the de...
The study of ascorbic acid as a reducing agent for iron(III) has been investigated in order to obtai...
A comparison was made on the use of two spectrophotometric methods, the ferric reducing antioxidant ...