Iron metabolism and absorption

N. Andrews
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引用次数: 7

Abstract

Iron is an essential nutrient for animals living in an oxygen-rich environment. It greatly enhances the oxygen-carrying capacity of aqueous solutions as the active center in hemoglobin, facilitating oxygen delivery to tissues. Because it accepts and loses electrons readily, iron confers redox activity on the cytochromes of the respiratory chain and on numerous other enzymes. Yet, its utility is balanced by a risk of toxicity. Free iron catalyzes the formation of free radicals that damage cell membranes, proteins and DNA. To exploit the useful properties of iron, while avoiding its toxicity, most living organisms have developed meticulously regulated mechanisms for iron transport and storage. Specialized proteins sequester extracellular and intracellular iron and mediate transport of iron across cellular membranes. Iron balance is regulated by systemic homeostatic mechanisms that we are only beginning to understand. This review describes our current understanding of iron metabolism in mammals.
铁的代谢和吸收
铁是生活在富氧环境中的动物必不可少的营养物质。它作为血红蛋白中的活性中心,大大提高了水溶液的携氧能力,促进了氧向组织的输送。因为铁容易接受和失去电子,所以它对呼吸链的细胞色素和许多其他酶具有氧化还原活性。然而,它的效用与毒性风险相平衡。游离铁催化自由基的形成,自由基会破坏细胞膜、蛋白质和DNA。为了开发铁的有用特性,同时避免其毒性,大多数生物已经开发出精心调节的铁运输和储存机制。专门的蛋白质隔离细胞外和细胞内的铁,并介导铁在细胞膜上的运输。铁平衡是由我们刚刚开始了解的系统稳态机制调节的。这篇综述描述了我们目前对哺乳动物铁代谢的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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