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Use of accelerator mass spectrometry for studies in nutrition [Review]

机译:加速器质谱用于营养研究[综述]

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摘要

Accelerator mass spectrometry (AMS) is an ultrasensitive analytical technique for measuring rare nuclides such as C-14, Al-26 and Ca-41. The low detection limit and wide dynamic range of AMS allow long-term and highly sensitive tracer studies in nutrition that cannot be performed with other methods. The present paper is intended to provide a description of AMS to the interested nutritionist and present proven applications. AMS is compared to liquid scintillation counting and stable isotope MS. A description of common AMS methodology is presented that consists of determining the dose, preparing the sample, diluting the sample (if necessary), and measuring the sample. Applications include Ca metabolism, Al uptake from the environment, dietary intake of carcinogens, fat metabolism and folate metabolism. Throughout this discussion the experimental advantages (small doses that pose no health risk, extremely long experimental lifetime, small sample sizes and high sensitivity) made possible by the unique analytical capabilities of AMS are emphasized. The future of AMS is discussed. As the number of AMS centres, instruments, and studies increases, the number of nutritional applications that employ AMS will continue to grow. The coupling of AMS with other analytical techniques (e.g. high performance liquid chromatography) will be developed as access to AMS improves.
机译:加速器质谱(AMS)是一种超灵敏分析技术,用于测量稀有核素,例如C-14,Al-26和Ca-41。 AMS的低检测限和宽动态范围可对营养进行长期且高度敏感的示踪剂研究,而其他方法则无法进行。本文旨在为有兴趣的营养学家提供AMS的描述,并提供经过验证的应用。将AMS与液体闪烁计数和稳定同位素MS相比较。本文介绍了常见的AMS方法,包括确定剂量,准备样品,稀释样品(如有必要)和测量样品。应用包括钙代谢,环境中铝的摄取,饮食中致癌物的摄入,脂肪代谢和叶酸代谢。在整个讨论中,都强调了AMS独特的分析功能所带来的实验优势(小剂量无健康风险,极长的实验寿命,小样本量和高灵敏度)。讨论了AMS的未来。随着AMS中心,仪器和研究的数量增加,采用AMS的营养应用程序的数量将继续增长。随着对AMS的访问权限的提高,AMS与其他分析技术(例如高效液相色谱法)的结合将得到发展。

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