富硒螺旋藻中的硒在缺硒大鼠体内的生物利用度低于亚硒酸钠和硒代蛋氨酸。

J. Cases, V. Vacchina, A. Napolitano, B. Caporiccio, P. Besançon, R. Lobinski, J. Rouanet
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引用次数: 47

摘要

通过测定组织硒积累量和谷胱甘肽过氧化物酶(GSH-Px)活性,评价富硒螺旋藻(SeSp)硒在缺硒大鼠体内的生物利用度。在42 d的试验中,大鼠通过食用不含硒的托鲁拉酵母(TY)为基础的日粮进行硒消耗;对照组饲喂在饲粮中添加75 μ g硒/kg的亚硒酸钠。然后在TY基础日粮中添加亚硒酸钠、硒代蛋氨酸(SeMet)或SeSp来补充硒(75 μ g/kg)。硒的形成强调亚硒酸盐的准缺失(占总硒的2%);有机硒由SeMet组成(约18%),其中大部分以两种硒蛋白(20-30 kDa和80 kDa)的形式存在。硒的总吸收量显著低于游离硒和亚硒酸钠。SeMet在恢复肝脏硒浓度方面不如亚硒酸钠有效,但在恢复肾脏硒浓度方面没有效果。SeSp的效果总是差得多。同样,SeSp中的硒在恢复GSH-Px活性方面不如其他形式的硒有效,除了血浆和红细胞中,三种来源之间没有差异。以亚硒酸盐作为硒的参比形式,用坡比分析法测定了硒的生物利用度,证实了这一点。尽管来自SeSp的硒不能像其他形式的硒那样在大多数组织中补充硒浓度和GSH-Px活性,但我们得出结论,SeSp具有生物学用途,并且由于其化学形式而被不同地代谢。
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Selenium from selenium-rich Spirulina is less bioavailable than selenium from sodium selenite and selenomethionine in selenium-deficient rats.
The bioavailabilty of selenium (Se) from selenium-rich Spirulina (SeSp) was assessed in Se-deficient rats by measuring tissue Se accumulation and glutathione peroxidase (GSH-Px) activity. For 42 d, rats were subjected to dietary Se depletion by consumption of a Torula yeast (TY)-based diet with no Se; controls were fed the same diet supplemented with 75 microg Se/kg diet as sodium selenite. Se-deficient rats were then repleted with Se (75 microg/kg) by the addition of sodium selenite, selenomethionine (SeMet) or SeSp to the TY basal diet. Selenium speciation in SeSp emphasized the quasi-absence of selenite (2% of total Se); organic Se comprised SeMet (approximately 18%), with the majority present in the form of two selenoproteins (20-30 kDa and 80 kDa). Gross absorption of Se from SeSp was significantly lower than from free SeMet and sodium selenite. SeMet was less effective than sodium selenite in restoring Se concentration in the liver but not in kidney. SeSp was always much less effective. Similarly, Se from SeSp was less effective than the other forms of Se in restoring GSH-Px activity, except in plasma and red blood cells where no differences were noted among the three sources. This was confirmed by measuring the bioavailability of Se by slope-ratio analysis using selenite as the reference form of Se. Although Se from SeSp did not replenish Se concentration and GSH-Px activity in most tissues to the same degree as the other forms of Se, we conclude that it is biologically useful and differently metabolized due to its chemical form.
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