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Use of stable isotopes and mathematical modelling to investigate human mineral metabolism

机译:使用稳定同位素和数学模型研究人类矿物质代谢

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Individuals have varying needs for minerals that are dependent, amongst other things, on their lifestyle, age and genetic makeup. Knowledge of exact individual nutritional requirements should lead to better health, increased quality of life and reduced need for expensive medical care. Bioavailability, nutrienta€“gene interactions and wholea€“body metabolism all need to be investigated further if we are to progress towards the goal of defining optimal health and nutritional status. The discussion which follows will critically review the latest developments in the area of metabolism for several of the minerals that are essential for human health: Ca, Zn, Cu and Se. Stablea€“isotope tracers and mathematical modelling are some of the tools being used to facilitate the greater understanding in uptake, utilisation and excretion of these minerals. Stable isotopes, administered in physiological doses, present little or no risk to volunteers and allow metabolic studies to be carried out in vulnerable population groups such as children and pregnant women. Intrinsic labelling of foodstuffs ensures that the tracer and the native mineral will behave similarly once inside the body. Advances in computing power and software dedicated to solving nutritional problems have made it possible for investigators to use mathematical modelling in their experimental work. Mineral metabolism is ideally suited to a form of modelling known as compartmental analysis, which allows rates of mineral transferand sizes of mineral stores to be calculated accurately without the need for invasive sampling of body tissues
机译:个人对矿物质的需求各不相同,这些矿物质尤其取决于其生活方式,年龄和基因组成。了解确切的个人营养需求将有助于改善健康状况,提高生活质量并减少对昂贵医疗的需求。如果我们要朝着定义最佳健康和营养状况的目标前进,则需要进一步研究生物利用度,营养素,基因之间的相互作用以及整个身体的新陈代谢。接下来的讨论将严格审查对人体健康至关重要的几种矿物质(钙,锌,铜和硒)在代谢领域的最新进展。稳定同位素示踪剂和数学模型是用来促进对这些矿物质的吸收,利用和排泄的更深入了解的一些工具。以生理剂量给药的稳定同位素,对志愿者的危险很小或没有危险,并允许在弱势人群(如儿童和孕妇)中进行代谢研究。食品的内在标签确保示踪剂和天然矿物质一旦进入体内,其行为便类似。致力于解决营养问题的计算能力和软件的进步,使研究人员可以在实验工作中使用数学模型。矿物质代谢非常适合于称为隔间分析的一种建模形式,该模型可精确计算矿物质转移的速率和矿物质存储的大小,而无需对人体组织进行侵入性采样

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