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硒中毒:对水鸟的影响及成因

Selenium toxicity: cause and effects in aquatic birds.

作者信息

Spallholz Julian E, Hoffman David J

机构信息

Food and Nutrition, Texas Tech University, Lubbock, TX 79409, USA.

出版信息

Aquat Toxicol. 2002 Apr;57(1-2):27-37. doi: 10.1016/s0166-445x(01)00268-5.

Abstract

There are several manners in which selenium may express its toxicity: (1) an important mechanism appears to involve the formation of CH(3)Se(minus sign) which either enters a redox cycle and generates superoxide and oxidative stress, or forms free radicals that bind to and inhibit important enzymes and proteins. (2) Excess selenium as selenocysteine results in inhibition of selenium methylation metabolism. As a consequence, concentrations of hydrogen selenide, an intermediate metabolite, accumulate in animals and are hepatotoxic, possibly causing other selenium-related adverse effects. (3) It is also possible that the presence of excess selenium analogs of sulfur-containing enzymes and structural proteins play a role in avian teratogenesis. L-selenomethionine is the most likely major dietary form of selenium encountered by aquatic birds, with lesser amounts of L-selenocysteine ingested from aquatic animal foods. The literature is suggestive that L-selenomethionine is not any more toxic to adult birds than other animals. L-Selenomethionine accumulates in tissue protein of adult birds and in the protein of egg white as would be expected to occur in animals. There is no suggestion from the literature that the levels of L-selenomethionine that would be expected to accumulate in eggs in the absence of environmental concentration of selenium pose harm to the developing embryo. For several species of aquatic birds, levels of Se as selenomethionine in the egg above 3 ppm on a wet weight basis result in reduced hatchability and deformed embryos. The toxicity of L-selenomethionine injected directly into eggs is greater than that found from the entry of L-selenomethionine into the egg from the normal adult diet. This suggests that there is unusual if not abnormal metabolism of L-selenomethionine in the embryo not seen when L-selenomethionine is present in egg white protein where it likely serves as a source of selenium for glutathione peroxidase synthesis in the developing aquatic chick.

摘要

硒可能通过多种方式表现出其毒性

(1) 一个重要机制似乎涉及CH(3)Se(负号)的形成,它要么进入氧化还原循环并产生超氧化物和氧化应激,要么形成自由基,这些自由基会结合并抑制重要的酶和蛋白质。(2) 过量的硒以硒代半胱氨酸的形式存在会导致硒甲基化代谢受到抑制。结果,中间代谢产物硒化氢的浓度在动物体内积累,具有肝毒性,可能会导致其他与硒相关的不良反应。(3) 含硫酶和结构蛋白的过量硒类似物的存在也可能在禽类致畸过程中起作用。L-硒代蛋氨酸是水鸟最可能从饮食中摄取的主要硒形式,从水生动物食物中摄取的L-硒代半胱氨酸量较少。文献表明,L-硒代蛋氨酸对成年鸟类的毒性并不比其他动物更大。L-硒代蛋氨酸会在成年鸟类的组织蛋白和蛋清蛋白中积累,正如预期在动物体内发生的那样。文献中没有迹象表明,在没有环境硒浓度的情况下,预期会在鸡蛋中积累的L-硒代蛋氨酸水平会对发育中的胚胎造成伤害。对于几种水鸟物种,以湿重计,鸡蛋中硒代蛋氨酸形式的硒含量超过3 ppm会导致孵化率降低和胚胎畸形。直接注射到鸡蛋中的L-硒代蛋氨酸毒性大于从正常成年饮食进入鸡蛋中的L-硒代蛋氨酸的毒性。这表明胚胎中L-硒代蛋氨酸存在异常(如果不是异常的话)代谢,而当L-硒代蛋氨酸存在于蛋清蛋白中时则未观察到这种情况,在蛋清蛋白中它可能作为发育中的水鸟雏鸡谷胱甘肽过氧化物酶合成的硒来源。

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