Bermingham Emma N, Hesketh John E, Sinclair Bruce R, Koolaard John P, Roy Nicole C
Food Nutrition & Health, Food & Bio-based Products, AgResearch Grasslands, Private Bag 11008, Tennent Drive, Palmerston North 4442, New Zealand.
Institute for Cell & Molecular Biosciences, University of Newcastle upon Tyne, Newcastle NE2 4HH, UK.
Nutrients. 2014 Sep 29;6(10):4002-31. doi: 10.3390/nu6104002.
Selenium may play a beneficial role in multi-factorial illnesses with genetic and environmental linkages via epigenetic regulation in part via glutathione peroxidase (GPx) activity. A meta-analysis was undertaken to quantify the effects of dietary selenium supplementation on the activity of overall GPx activity in different tissues and animal species and to compare the effectiveness of different forms of dietary selenium. GPx activity response was affected by both the dose and form of selenium (p < 0.001). There were differences between tissues on the effects of selenium supplementation on GPx activity (p < 0.001); however, there was no evidence in the data of differences between animal species (p = 0.95). The interactions between dose and tissue, animal species and form were significant (p < 0.001). Tissues particularly sensitive to changes in selenium supply include red blood cells, kidney and muscle. The meta-analysis identified that for animal species selenium-enriched foods were more effective than selenomethionine at increasing GPx activity.
硒可能通过部分经由谷胱甘肽过氧化物酶(GPx)活性的表观遗传调控,在具有遗传和环境关联的多因素疾病中发挥有益作用。进行了一项荟萃分析,以量化膳食补充硒对不同组织和动物物种中总体GPx活性的影响,并比较不同形式膳食硒的有效性。GPx活性反应受硒的剂量和形式两者影响(p < 0.001)。补充硒对GPx活性的影响在不同组织之间存在差异(p < 0.001);然而,数据中没有证据表明动物物种之间存在差异(p = 0.95)。剂量与组织、动物物种和形式之间的相互作用显著(p < 0.001)。对硒供应变化特别敏感的组织包括红细胞、肾脏和肌肉。荟萃分析确定,对于动物物种而言,富硒食物在提高GPx活性方面比硒代蛋氨酸更有效。