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膳食蛋氨酸对大鼠体内亚硒酸盐和硒代蛋氨酸生物效价的影响。

Effect of dietary methionine on the biopotency of selenite and selenomethionine in the rat.

作者信息

Sunde R A, Gutzke G E, Hoekstra W G

出版信息

J Nutr. 1981 Jan;111(1):76-88. doi: 10.1093/jn/111.1.76.

Abstract

The effect of dietary methionine (Met) on the Biopotency of selenium (Se) from selenite and selenomethionine (Se-Met) was studied in rats fed a 30% torula yeast-based diet containing 0.24% Met and less than 0.02 ppm Se. Biopotency was quantitated by assaying liver, plasma and heart for the glutathione peroxidase (GSH-Px) increase elicited by a given level of Se fed for 1 week to Se-deficient rats. At dietary Se levels up to 0.5 ppm Se, the level of dietary Met supplementation did not alter selenite biopotency. In contrast, dietary Met supplementation increased the biopotency of Se-Met. With basal Met intakes, the biopotency of Se-Met was 25% that of selenite below 0.5 ppm Se. The addition of 0.4% Met to the diet made Se-Met biopotency equivalent to selenite biopotency in one experiment, but in a second experiment with younger, faster growing rats, 0.4% Met did not completely restore the biopotency of Se-Met. These results indicate that low dietary Met decreases the biopotency of Se-Met but not of selenite. Altered Se metabolism at suboptimal dietary Met may occur because more Se-Met is incorporated into protein and thus less Se is available for GSH-Px synthesis. These results suggest that adequate dietary Met is required for optimal utilization of the Se in feedstuffs of plant origin, as Se-Met is presumably a major form of plant selenium.

摘要

在以含0.24%蛋氨酸和低于0.02 ppm硒的30%酵母饲料喂养的大鼠中,研究了膳食蛋氨酸(Met)对亚硒酸盐和硒代蛋氨酸(Se-Met)中硒(Se)生物效价的影响。通过测定缺硒大鼠连续1周摄入一定水平硒后肝脏、血浆和心脏中谷胱甘肽过氧化物酶(GSH-Px)的增加量来定量生物效价。在膳食硒水平高达0.5 ppm时,膳食蛋氨酸补充水平不会改变亚硒酸盐的生物效价。相比之下,膳食补充蛋氨酸会增加Se-Met的生物效价。在基础蛋氨酸摄入量下,低于0.5 ppm硒时,Se-Met的生物效价是亚硒酸盐的25%。在一项实验中,向饲料中添加0.4%蛋氨酸可使Se-Met的生物效价与亚硒酸盐的生物效价相当,但在另一项针对更年轻、生长更快的大鼠的实验中,0.4%蛋氨酸并未完全恢复Se-Met的生物效价。这些结果表明,低膳食蛋氨酸会降低Se-Met的生物效价,但不会降低亚硒酸盐的生物效价。在膳食蛋氨酸水平欠佳时硒代谢发生改变,可能是因为更多的Se-Met被整合到蛋白质中,因此可用于合成GSH-Px的硒减少。这些结果表明,对于植物源饲料中的硒的最佳利用,需要充足的膳食蛋氨酸,因为Se-Met可能是植物硒的主要形式。

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