The antioxidant activity of aqueous spinach extract: chemical identification of active fractions
In previous studies we have elucidated the presence of powerful, natural antioxidants (NAO) in water extracts of spinach leaves and demonstrated their biological activity in both in vitro and in vivo systems. In the present study, the chemical identity of several of these antioxidant components is p...
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Veröffentlicht in: | Phytochemistry (Oxford) 2001-09, Vol.58 (1), p.143-152 |
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Zusammenfassung: | In previous studies we have elucidated the presence of powerful, natural antioxidants (NAO) in water extracts of spinach leaves and demonstrated their biological activity in both in vitro and in vivo systems. In the present study, the chemical identity of several of these antioxidant components is presented. Spinach leaves were extracted with water and the 20,000 g supernatant which contained the antioxidant activity was extracted with a water:acetone (1:9) solution. The 20,000 g supernatant obtained was further purified on reverse phase HPLC using C-8 semi-preparative column. Elution with 0.1% TFA resulted in five hydrophilic peaks. Elution with acetonitrile in TFA resulted in seven additional hydrophobic peaks. All the peaks were detected at 250 nm. All the fractions obtained showed antioxidant activity when tested using three different assays. Based on
1H and
13C NMR spectroscopy four of the hydrophobic fractions were identified as glucuronic acid derivatives of flavonoids and three additional fractions as
trans and
cis isomers of
p-coumaric acid and others as
meso-tartarate derivatives of
p-coumaric acid. The present study demonstrates for the first time the presence of both flavonoids and
p-coumaric acid derivatives as antioxidant components of the aqueous extract of spinach leaves.
In previous studies we have elucidated the presence of powerful, natural antioxidants (NAO) in water extracts of spinach leaves and demonstrated their biological activity in both in vitro and in vivo systems. In the present work several of these components were isolated and shown (by
1H and
13C NMR) to belong to two classes of phenolics; glucuronic acid derivatives of flavonoids and
meso-tartarate derivatives of
p-coumaric acid. |
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ISSN: | 0031-9422 1873-3700 |
DOI: | 10.1016/S0031-9422(01)00137-6 |