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大鼠血浆中镉与硒的相互作用。

Interaction between cadmium and selenium in rat plasma.

作者信息

Gasiewicz T A, Smith J C

出版信息

Environ Health Perspect. 1978 Aug;25:133-6. doi: 10.1289/ehp.7825133.

Abstract

The metabolism of (75)Se-labeled SeO(3) (2-) and its conversion by intact rat erythrocytes in vitro to a form which complexes with Cd and plasma proteins were studied. By utilizing both excess SeO(3) (2-) and N-ethylmaleimide to lower erythrocyte reduced glutathione (GSH) concentrations, it was shown that the uptake and metabolism of SeO(3) (2-) were GSH-dependent, the probable intermediate being glutathione selenotrisulfide (GSSeSG). Secondary release of selenium by rat erythrocytes had no relation to the erythrocyte transport of oxidized glutathione (GSSG). While fluoride depressed and chromate increased GSSG transport, chromate, a glutathione reductase inhibitor, decreased selenium release. This release appeared to be secondary to a reaction catalyzed by glutathione reductase. The similarity of I(50) values for chromate's inhibition of glutathione reductase and for the inhibition of selenium release further suggested a relationship between these two events. H(2)Se or a similar product of GSSeSG reduction is proposed to be the active product of SeO(3) (2-) metabolism by rat erythrocytes. By use of gel-filtration and ion-exchange methods it was noted that the incubation of H(2)Se with cadmium and plasma produced a Cd-Se complex indistinguishable from that produced by incubation of Cd, SeO(3) (2-), plasma, and erythrocytes in vitro, or that noted following the administration of Cd and SeO(3)in vivo. A mechanism whereby the tissue distribution and toxicity of cadmium are altered by selenium is suggested.

摘要

研究了(75)硒标记的亚硒酸根离子(SeO₃²⁻)的代谢及其在体外被完整大鼠红细胞转化为与镉和血浆蛋白结合形式的过程。通过使用过量的亚硒酸根离子(SeO₃²⁻)和N - 乙基马来酰亚胺来降低红细胞内还原型谷胱甘肽(GSH)的浓度,结果表明亚硒酸根离子(SeO₃²⁻)的摄取和代谢依赖于GSH,可能的中间产物是谷胱甘肽硒三硫化物(GSSeSG)。大鼠红细胞中硒的二次释放与氧化型谷胱甘肽(GSSG)的红细胞转运无关。虽然氟化物抑制而铬酸盐增加GSSG转运,但作为谷胱甘肽还原酶抑制剂的铬酸盐却减少了硒的释放。这种释放似乎是谷胱甘肽还原酶催化反应的继发结果。铬酸盐对谷胱甘肽还原酶的抑制作用的半数抑制浓度(I₅₀)值与对硒释放的抑制作用的相似性进一步表明了这两个事件之间的关系。有人提出H₂Se或GSSeSG还原的类似产物是大鼠红细胞中亚硒酸根离子(SeO₃²⁻)代谢的活性产物。通过使用凝胶过滤和离子交换方法,注意到H₂Se与镉和血浆一起孵育产生的镉 - 硒复合物与镉、亚硒酸根离子(SeO₃²⁻)、血浆和红细胞在体外孵育产生的复合物,或在体内给予镉和亚硒酸根离子(SeO₃²⁻)后观察到的复合物没有区别。提出了一种硒改变镉的组织分布和毒性的机制。

相似文献

1
Interaction between cadmium and selenium in rat plasma.大鼠血浆中镉与硒的相互作用。
Environ Health Perspect. 1978 Aug;25:133-6. doi: 10.1289/ehp.7825133.
2
The metabolism of selenite by intact rat erythrocytes in vitro.完整大鼠红细胞在体外对亚硒酸盐的代谢
Chem Biol Interact. 1978 Jun;21(2-3):299-313. doi: 10.1016/0009-2797(78)90028-5.
3
Properties of the cadmium and selenium complex formed in rat plasma in vivo and in vitro.
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Role of glutathione in selenite binding by human plasma.
Biol Trace Elem Res. 1989 Apr-May;20(1-2):95-104. doi: 10.1007/BF02919102.

本文引用的文献

2
Selectivity of organ response to cadmium injury and various protective measures.
J Pathol Bacteriol. 1968 Jul;96(1):89-96. doi: 10.1002/path.1700960110.
5
Metabolism of red cell glutathione.红细胞谷胱甘肽的代谢
Exp Eye Res. 1971 May;11(3):294-305. doi: 10.1016/s0014-4835(71)80041-6.
8
The metabolism of selenite in cow blood in vitro.
Acta Pharmacol Toxicol (Copenh). 1973;33(1):6-16. doi: 10.1111/j.1600-0773.1973.tb01501.x.

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