4.7 Article

Selenium-Containing Allophycocyanin Purified from Selenium-Enriched Spirulina platensis Attenuates AAPH-Induced Oxidative Stress in Human Erythrocytes through Inhibition of ROS Generation

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 59, Issue 16, Pages 8683-8690

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jf2019769

Keywords

selenium; selenium-containing allophycocyanin; antioxidant; purification

Funding

  1. Natural Science Foundation of China
  2. Science and Technology Department of Guangdong Province
  3. Fundamental Research Funds for the Central Universities
  4. Program for New Century Excellent Talents in University
  5. CUHK-IPMBAB
  6. State Key Laboratory of Oncology in South China
  7. Natural Science Foundation of Guangdong Province

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Both selenium and allophycocyanin (APC) have been reported to show novel antioxidant activities. In this study, a fast protein liquid chromatographic method for purification of selenium-containing allophycocyanin (Se-APC) from selenium-enriched Spirulina platensis and the protective effect of Se-APC on 2,2'-azobis(2-amidinopropane) dihydrochloride (AAPH)induced oxidative stress have been described. After fractionation by ammonium sulfate precipitation, and separation by DEAE-Sepharose ion-exchange and Sephacryl S-300 size exclusion chromatography, Se-APC with purity ratio (A652/A280) of 5.30 and Se concentration of 343.02 mu g g(-1) protein was obtained. Se-APC exhibited stronger antioxidant activity than APC by scavenging ABTS (2,2'-azinobis-3-ethylbenzothiazolin-6-sulfonic acid) and AAPH free radicals. The oxidative hemolysis and morphological changes induced by AAPH in human erythrocytes were effectively reversed by coincubation with Se-APC. Lipid oxidation induced by the pro-oxidant agent cupric chloride in human plasma, as evaluated by formation of conjugated diene, was blocked by Se-APC. The accumulation of malondialdehyde, loss of reduced glutathione, and increase in enzyme activities of glutathione peroxidase and reductase induced by AAPH in human erythrocytes were effectively suppressed by Se-APC. Furthermore, Se-APC significantly prevented AAPH-induced intracellular reactive oxygen species (ROS) generation. Taken together, our results suggest that Se-APC demonstrates application potential in treatment of diseases in which excess production of ROS acts as a casual or contributory factor.

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