Selenium-enriched plant foods: Selenium accumulation, speciation, and health functionality
Pipat Tangjaidee, Peter J. Swedlund, Jiqian Xiang, Hongqing Yin, Siew Young Quek
Frontiers in Nutrition
Abstract
Selenium (Se) is an essential element for maintaining human health. The biological effects and toxicity of Se compounds in humans are related to their chemical forms and consumption doses. In general, organic Se species, including selenoamino acids such as selenomethionine (SeMet), selenocystine (SeCys<sub>2</sub>), and Se-methylselenocysteine (MSC), could provide greater bioactivities with less toxicity compared to those inorganics including selenite (Se IV) and selenate (Se VI). Plants are vital sources of organic Se because they can accumulate inorganic Se or metabolites and store them as organic Se forms. Therefore, Se-enriched plants could be applied as human food to reduce deficiency problems and deliver health benefits. This review describes the recent studies on the enrichment of Se-containing plants in particular Se accumulation and speciation, their functional properties related to human health, and future perspectives for developing Se-enriched foods. Generally, Se's concentration and chemical forms in plants are determined by the accumulation ability of plant species. Brassica family and cereal grains have excessive accumulation capacity and store major organic Se compounds in their cells compared to other plants. The biological properties of Se-enriched plants, including antioxidant, anti-diabetes, and anticancer activities, have significantly presented in both <i>in vitro</i> cell culture models and <i>in vivo</i> animal assays. Comparatively, fewer human clinical trials are available. Scientific investigations on the functional health properties of Se-enriched edible plants in humans are essential to achieve in-depth information supporting the value of Se-enriched food to humans.
Extracted Claims
5 claims extracted from this paper into the knowledge graph
organic selenium species provide greater bioactivities with less toxicity
“organic Se species, including selenoamino acids such as selenomethionine (SeMet), selenocystine (SeCys<sub>2</sub>), and Se-methylselenocysteine (MSC), could provide greater bioactivities with less to...”
inorganic selenium species include selenite (Se IV) and selenate (Se VI)
“inorganics including selenite (Se IV) and selenate (Se VI)”
Se-enriched plants have antioxidant, anti-diabetes, and anticancer activities
“The biological properties of Se-enriched plants, including antioxidant, anti-diabetes, and anticancer activities, have significantly presented in both <i>in vitro</i> cell culture models and <i>in viv...”