DelBo’ C., MartiniD., PorriniM., Klimis-ZacasD., RisoP. (2015) Berries and oxidative stress markers: an overview of human intervention studies. Food Function, 6, 2890–2917.
2.
WuX. (2014) Antioxidant activities of anthocyanins. Anthocyanins in Health and Disease, 141–164.
3.
SalukJ., BijakM., PosmykM.M., ZbikowskaH.M. (2015) Red cabbage anthocyanins as inhibitors of lipopolysaccharide-induced oxidative stress in blood platelets. International Journal of Biological Macromolecules, 80, 702–709.
4.
ZhaoM., WangP., ZhuY., LiuX., HuX., ChenF. (2015) Blueberry anthocyanins extract inhibits acrylamide-induced diverse toxicity in mice by preventing oxidative stress and cytochrome P450 2E1 activation. Journal of Functional Foods, 14, 95–101.
5.
DemirT., SonmezF., BilenC., GencerN. (2013) Extraction and biological activity of total anthocyanins from sweet cherry cultivars as polyphenol oxidase inhibitors. Journal of Food, Agriculture & Environment, 11, 572–575.
6.
NabaviS.F., HabtemariamS., DagliaM., ShafighiN., BarberA.J., NabaviS.M. (2015) Anthocyanins as a potential therapy for diabetic retinopathy. Current Medicinal Chemistry, 22, 52–58.
7.
JiangH., ShiD., WangX., GouX., YinL., YangG. (2014) Mechanical shaking extraction and antioxidant activity of anthocyanins from Rubus coreanus Maq. fruits. Shipin Kexue (Beijing, China), 35, 67–72.
8.
KostadinovicV.S., MirhosseiniH., BogevaE. (2013) Isolation of anthocyanins by high-speed countercurrent chromatography and application of the color activity concept to different varieties of red grape pomace from Macedonia. Journal of Nutrition & Food Sciences, 3, 1000243/1–1000243/7.
9.
MaT., HuN., DingC., ZhangQ., LiW., SuoY., WangH., BaiB., DingC. (2016) In vitro and in vivo biological activities of anthocyanins from Nitraria tangutorun Bobr. fruits. Food Chemistry, 194, 296–303.
10.
IacobucciG.A., SweenyJ.G. (1983) The chemistry of anthocyanins, anthocyanidins and related flavylium salts. Tetrahedron, 39, 3005–3038.
11.
SiegelA. (2008) Sir Robert Robinson's “Anthocyanin period”: 1922–1934 - A case study of an early twentieth-century natural products synthesis. Ambix, 55, 62–82.
12.
ElhabiriM., FigueiredoP., FougerousseA., BrouillardR. (1995) A convenient method for conversion of flavonols into anthocyanins. Tetrahedron Letters, 36, 4611–4614.
13.
KondoT., OyamaK., NakamuraS., YamakawaD., TokunoK., YoshidaK. (2006) Novel and efficient synthesis of cyanidin 3-O-β-D-glucoside from (+)-catechin via a flav-3-en-3-ol as a key intermediate. Organic Letters, 8, 3609–3613.
14.
SweenyJ.G., IacobucciG.A. (1977) Synthesis of anthocyanidins. I. The oxidative generation of flavylium cations using benzoquinones. Tetrahedron, 33, 2890–2917.
15.
LiepaA.J. (1984) A synthesis of 2,4-dihydroxyisoflavans and 2-hydroxyisoflav-3-enes: versatile precursors to isoflavanoids. Australian Journal of Chemistry, 37, 2545–2558.