Bansal M P, Kaur Tranum
Department of Biophysics, Panjab University, Chandigarh-160014, India.
J Med Food. 2002 Summer;5(2):85-90. doi: 10.1089/109662002760178168.
We attempted to determine the level and form of selenium (Se) that yielded the maximum Se status of yeast cells, for their evaluation as a source of Se for chemopreventive action. The influence of various Se concentrations from organic (selenomethionine) and inorganic (sodium selenite) Se compounds on growth pattern and cell viability and the alterations in the antioxidant enzyme system of yeast were evaluated. A continuous decrease in cell and colony-forming units counts was observed with increasing concentrations of Se from either source. Increasing Se status of yeast cells was found with increasing concentrations of Se with both forms, with much greater uptake for organic Se at maximum Se concentrations. A continuous increase in glutathione peroxidase (GSH-Px) activity with increasing Se concentrations in both forms revealed an active Se response in terms of antioxidant activity, with a more pronounced percentage increase with selenomethionine. A highly significant increase in total glutathione was observed with selenomethionine supplementation, compared with sodium selenite. A decreasing trend in reduced glutathione was observed with increasing organic or inorganic Se concentrations. An increasing trend in glutathione-S-transferase activity was observed with increasing Se concentrations for both forms. Significantly higher values of glutathione-S-transferase were associated with the organic form at higher Se concentrations. There was normal activity of Se in mammalian cells. The results showed that an organic Se source more greatly enhances the Se status of yeast cells and hence could help in chemoprevention if consumed by the population.
我们试图确定能使酵母细胞达到最高硒(Se)状态的硒水平和形式,以便将其作为化学预防作用的硒源进行评估。评估了来自有机(硒代蛋氨酸)和无机(亚硒酸钠)硒化合物的不同硒浓度对酵母生长模式、细胞活力以及抗氧化酶系统变化的影响。随着来自任一来源的硒浓度增加,观察到细胞和集落形成单位数量持续减少。两种形式的硒浓度增加时,酵母细胞的硒状态均升高,在最大硒浓度下,有机硒的摄取量要大得多。两种形式的硒浓度增加时,谷胱甘肽过氧化物酶(GSH-Px)活性持续增加,这表明在抗氧化活性方面硒有积极反应,硒代蛋氨酸的百分比增加更为明显。与亚硒酸钠相比,补充硒代蛋氨酸后总谷胱甘肽显著增加。随着有机或无机硒浓度增加,还原型谷胱甘肽呈下降趋势。两种形式的硒浓度增加时,谷胱甘肽-S-转移酶活性均呈上升趋势。在较高硒浓度下,谷胱甘肽-S-转移酶的显著较高值与有机形式相关。哺乳动物细胞中的硒活性正常。结果表明,有机硒源能更大程度地提高酵母细胞的硒状态,因此如果人群食用,可能有助于化学预防。