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Pregled bibliografske jedinice broj: 204418

Antioxidant and free radical scavening capacity: novel electrochemical methods


Irena Kereković, Stjepan Milardović
Antioxidant and free radical scavening capacity: novel electrochemical methods // Yisac 2005, 12th Young Investigators Seminar on Analytical Chemistry, Book of Abstract
Sarajevo: Faculty of Natural Science and Mathematics, Department of Chemistry, 2005. str. 86-86 (poster, međunarodna recenzija, sažetak, znanstveni)


CROSBI ID: 204418 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Antioxidant and free radical scavening capacity: novel electrochemical methods

Autori
Irena Kereković, Stjepan Milardović

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni

Izvornik
Yisac 2005, 12th Young Investigators Seminar on Analytical Chemistry, Book of Abstract / - Sarajevo : Faculty of Natural Science and Mathematics, Department of Chemistry, 2005, 86-86

Skup
Yisac 2005, 12th Young Investigators Seminar on Analytical Chemistry

Mjesto i datum
Sarajevo, Bosna i Hercegovina, 05.07.2005. - 10.07.2005

Vrsta sudjelovanja
Poster

Vrsta recenzije
Međunarodna recenzija

Ključne riječi
Antioxidant; electrochemical method; DPPH; Free radical

Sažetak
A considerable interest has been focused recently on analytical methods for evaluation of antioxidant activity of food and biological samples. One of the most widely used method for antioxidant activity evaluation is the DPPH decolourisation assay based on the scavenging of stable 2, 2-diphenyl-1-picrylhydrazyl (DPPH&middot ; ) free radical by the antioxidant present in the sample. DPPH free radical reacts with antioxidant (AH) according to the equation: DPPH&middot ; + AH &reg ; DPPH&middot ; H + A. Two methods were used to evaluate antioxidant activity and were compared with classic spectrophotometric measurements. Nonreacted DPPH&middot ; absorbs in the visible range and spectrophotometric method is based on colour intensity measured at 518 nm. Electrochemical measurements of antioxidant activity are based on the same equation but detection of residual concentration of nonreacted free radical is determined amperometrically i.e. biamperometrically. Current response, for amperometric method, obtained by glassy carbon electrode polarized at fixed potential is proportional to the concentration of nonreacted DPPH&middot ; . In biamperometric determination of antioxidant activity two identical glassy carbon disc electrodes were mounted in a classic electrochemical cell containing DPPH&middot ; │ DPPH redox couple and tested in a range of working potential difference. Antioxidant activity of some water-soluble antioxidants present in the blood, as well as ethanol-soluble antioxidants typically present in certain foods and drinks were determined. Proposed electrochemical methods, based on glassy carbon electrode, show good chemical stability and allow analysis of nontransparent and turbid samples since the response of detector is not affected as in spectrophotometric measurements.

Izvorni jezik
Engleski

Znanstvena područja
Kemija



POVEZANOST RADA


Projekti:
0125054

Ustanove:
Fakultet kemijskog inženjerstva i tehnologije, Zagreb


Citiraj ovu publikaciju:

Irena Kereković, Stjepan Milardović
Antioxidant and free radical scavening capacity: novel electrochemical methods // Yisac 2005, 12th Young Investigators Seminar on Analytical Chemistry, Book of Abstract
Sarajevo: Faculty of Natural Science and Mathematics, Department of Chemistry, 2005. str. 86-86 (poster, međunarodna recenzija, sažetak, znanstveni)
Irena Kereković, S. (2005) Antioxidant and free radical scavening capacity: novel electrochemical methods. U: Yisac 2005, 12th Young Investigators Seminar on Analytical Chemistry, Book of Abstract.
@article{article, author = {Irena Kerekovi\'{c}, Stjepan Milardovi\'{c}}, year = {2005}, pages = {86-86}, keywords = {Antioxidant, electrochemical method, DPPH, Free radical}, title = {Antioxidant and free radical scavening capacity: novel electrochemical methods}, keyword = {Antioxidant, electrochemical method, DPPH, Free radical}, publisher = {Faculty of Natural Science and Mathematics, Department of Chemistry}, publisherplace = {Sarajevo, Bosna i Hercegovina} }
@article{article, author = {Irena Kerekovi\'{c}, Stjepan Milardovi\'{c}}, year = {2005}, pages = {86-86}, keywords = {Antioxidant, electrochemical method, DPPH, Free radical}, title = {Antioxidant and free radical scavening capacity: novel electrochemical methods}, keyword = {Antioxidant, electrochemical method, DPPH, Free radical}, publisher = {Faculty of Natural Science and Mathematics, Department of Chemistry}, publisherplace = {Sarajevo, Bosna i Hercegovina} }




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