1 Physiology and metabolism of essential trace elements: An outline

P.J. Aggett
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引用次数: 119

Abstract

Man depends on at least nine trace elements—iron, zinc, copper, manganese, iodine, chromium, selenium, molybdenum and cobalt—for optimum metabolic function. These elements serve a variety of functions including catalytic, structural and regulatory activities in which they interact with macromolecules such as enzymes, pro-hormones, presecretory granules and biological membranes. These micronutrients are involved, therefore, in all major metabolic pathways at levels which are so fundamental that the features of deficiency of many of them are protean and non-specific. In considering the metabolism of the elements themselves, they fall into two groups: those which exist normally as cations and those present as anions. The latter group are absorbed relatively easily and whole-body homeostasis is mediated mainly by renal excretion. The cations need specific pathways for absorption and their homeostasis is effected by gastrointestinal and biliary secretion. Some elements are absorbed more efficiently as organic complexes. The net achievement of the metabolic pathways for each element is to deliver it to its functional site(s) by exploiting its physicochemical characteristics to avoid interactions with other inorganic nutrients.

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1必需微量元素的生理与代谢:概述
人体需要至少九种微量元素——铁、锌、铜、锰、碘、铬、硒、钼和钴——来维持最佳的代谢功能。这些元件具有多种功能,包括催化、结构和调节活性,它们与大分子(如酶、促激素、分泌前颗粒和生物膜)相互作用。因此,这些微量营养素参与所有主要的代谢途径,其水平是如此基本,以至于其中许多营养素缺乏的特征是蛋白质和非特异性的。在考虑元素本身的代谢时,它们分为两类:通常以阳离子形式存在的和以阴离子形式存在的。后一组相对容易被吸收,主要通过肾脏排泄介导全身稳态。这些阳离子需要特定的吸收途径,它们的稳态受胃肠道和胆道分泌的影响。有些元素以有机配合物的形式被更有效地吸收。每种元素的代谢途径的最终成就是通过利用其物理化学特性来避免与其他无机营养素的相互作用,将其运送到其功能位点。
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