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首页> 外文期刊>Biochemical Society Transactions >Iron and copper, and their interactions during development.
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Iron and copper, and their interactions during development.

机译:铁和铜及其在开发过程中的相互作用。

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摘要

During development, the fetus is entirely dependent on the mother for its nutrient requirements. Subsequently, it is a period when both are vulnerable to changes in dietary supply, especially of those nutrients that are marginal under normal circumstances. In developed countries, this applies mainly to micronutrients. Even now, iron deficiency is a common disorder, especially in pregnancy. Similarly, copper intake in the U.K. population is rarely above adequate levels. It is now becoming clear that nutrient deficiencies during pregnancy can result in problems for the offspring, in both the short- and long-term. Early studies showed that lambs born to mothers on copper-deficient pastures developed 'swayback', with neurological and muscular symptoms that could not be reversed by postnatal supplementation. Our own findings have shown that prenatal iron deficiency results in increased postnatal blood pressure, even though the offspring have normal dietary iron levels from birth. These observations emphasize the importance of iron and copper in growth and development. Complicating the situation further is the fact that copper and iron are known to interact with each other in many ways, including absorption and intracellular transport. However, their interactions during the pregnancy appear to be more complex than during the non-pregnant state. In the present review, we examine the importance of these metals and their interactions, the consequences, both short- and long-term, of deficiency and consider some possible mechanisms whereby these effects may be generated.
机译:在发育过程中,胎儿完全取决于母亲的营养需求。随后,这是两者都容易受到饮食供应变化的影响,尤其是在正常情况下边缘的营养素。在发达国家,这主要适用于微量营养素。即使是现在,铁缺乏症还是一种常见的疾病,尤其是在怀孕中。同样,英国人口中的铜摄入量很少高于足够的水平。现在越来越清楚的是,怀孕期间的营养缺乏在短期和长期内都可能导致后代的问题。早期研究表明,母亲在缺乏铜的牧场上出生的羔羊出现了“摇摆”,神经系统和肌肉症状无法通过补充产后的补充而逆转。我们自己的发现表明,产前铁缺乏会导致产后血压升高,即使后代从出生起正常的饮食铁水平。这些观察结果强调了铁和铜在生长和发展中的重要性。使情况更加复杂的事实是,已知铜和铁在许多方面相互相互作用,包括吸收和细胞内转运。但是,他们在怀孕期间的相互作用似乎比非妊娠状态更为复杂。在本综述中,我们研究了这些金属及其相互作用的重要性,即短期和长期缺陷的后果,并考虑了一些可能产生这些影响的可能机制。

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