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On the importance of selenium and iodine metabolism for thyroid hormone biosynthesis and human health

机译:硒和碘代谢对甲状腺激素生物合成和人体健康的重要性

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The trace elements iodine and selenium (Se) are essential for thyroid gland functioning and thyroid hormone biosynthesis and metabolism. While iodine is needed as the eponymous constituent of the two major thyroid hormones triiodo-L-thyronine (T3), and tetraiodo-L-thyronine (T4), Se is essential for the biosynthesis and function of a small number of selenocysteine (Sec)-containing selenoproteins implicated in thyroid hormone metabolism and gland function. The Se-dependent iodothyronine deiodinases control thyroid hormone turnover, while both intracellular and secreted Se-dependent glutathione peroxidases are implicated in gland protection. Recently, a number of clinical supplementation trials have indicated positive effects of increasing the Se status of the participants in a variety of pathologies. These findings enforce the notion that many people might profit from improving their Se status, both as a means to reduce the individual health risk as well as to balance a Se deficiency which often develops during the course of illness. Even though the underlying mechanisms are still largely uncharacterised, the effects of Se appear to be exerted via multiple different mechanisms that impact most pronounced on the endocrine and the immune systems.
机译:微量元素碘和硒(Se)对甲状腺功能以及甲状腺激素的生物合成和代谢至关重要。虽然碘是两种主要甲状腺激素三碘-L-甲状腺素(T3)和四碘-L-甲状腺素(T4)的同名成分,但硒对于少量硒代半胱氨酸(Sec)的生物合成和功能至关重要。含硒蛋白参与甲状腺激素代谢和腺体功能。 Se依赖的碘甲状腺素脱碘酶控制甲状腺激素的转换,而细胞内和分泌的Se依赖的谷胱甘肽过氧化物酶都与腺体保护有关。最近,许多临床补充试验表明,在各种病理学中增加参与者的硒状态具有积极作用。这些发现强化了这样一种观念,即许多人可能会从改善其硒状况中获益,这既可以作为降低个人健康风险的一种手段,又可以平衡疾病期间经常出现的硒缺乏症。即使基本的机制仍未确定,Se的作用似乎是通过多种不同的机制发挥的,这些机制对内分泌和免疫系统的影响最为明显。

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