Antioxidant Activity of Betalains from Plants of the Amaranthaceae

Yi‐Zhong Cai, Mei Sun, Harold Corke

Journal of Agricultural and Food Chemistry · 2003 · 672 citations · 15 references

TL;DR

The study examined how betalain chemical structure influences antioxidant activity. The authors measured antioxidant activity of seven pure betalain compounds and four fractions from Amaranthaceae using a modified DPPH assay. All tested betalains exhibited strong antioxidant activity with EC50 values of 3.4–8.4 µM, gomphrenin betacyanins and betaxanthins being 3–4 × more active than ascorbic acid, and activity decreasing in the order simple gomphrenins > acylated gomphrenins > dopamine‑betaxanthin > (S)-tryptophan‑betaxanthin > 3‑methoxytyramine‑betaxanthin > betanin/isobetanin > celosianins > iresinins > amaranthine/isoamaranthine. Keywords: antioxidant activity, Amaranthaceae, betalains, betacyanins, betaxanthins, DPPH, antioxidants, colorants.

Abstract

Antioxidant activity of betalain pigments (seven pure compounds and four combined fractions) from plants of the family Amaranthaceae was evaluated using the modified DPPH• (1,1-diphenyl-2-picrylhydrazyl) method. All tested betalains exhibited strong antioxidant activity. Their EC50 values ranged from 3.4 to 8.4 μM. Gomphrenin type betacyanins (mean = 3.7 μM) and betaxanthins (mean = 4.2 μM) demonstrated the strongest antioxidant activity, 3−4-fold stronger than ascorbic acid (13.9 μM) and also stronger than rutin (6.1 μM) and catechin (7.2 μM). Antioxidant activity of the tested betalains decreased in the following order: simple gomphrenins > acylated gomphrenins > dopamine-betaxanthin > (S)-tryptophan-betaxanthin > 3-methoxytyramine-betaxanthin > betanin/isobetanin > celosianins > iresinins > amaranthine/isoamaranthine. This study also investigated and discussed the relationship between the chemical structure and the activity of the betalains. The free radical scavenging activity of the betalains usually increased with the numbers of hydroxyl/imino groups and, moreover, depended on the position of hydroxyl groups and glycosylation of aglycones in the betalain molecules. Keywords: Antioxidant activity; Amaranthaceae; betalains; betacyanins; betaxanthins; DPPH•; antioxidants; colorants

References

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