Yue Liu, Yang Yang, Yin-Yin Xia, Jamie V de Seymour, De-Zhang Zhao, Yang-Mei Li, Hua Zhang, Ting-Li Han
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Five different HNO<sub>3</sub> (65%) digestion methods were investigated and evaluated for their internal standard solution stability, reproducibility, element coverage, and standard solution recovery efficiency, namely, room temperature for 24 h (RT), 90°C for 4 h (T90), ultrasonic-assisted digestion (UltraS), programmed digestion of microwave digestion (MicroD), and ordinary microwave oven digestion (O-MicroD). Our results demonstrated that O-MicroD, MicroD, and RT were the best performing digestion methods for coefficient of variation (CV) scores, coverage, and recovery efficiency, respectively. In particular, the O-MicroD method detected multiple elements in a small quantity of hair (3 mg), with minimum nitric acid usage (200 <i>μ</i>l) and a short digestion time (30 min). The O-MicroD method had excellent reproducibility, as demonstrated by a continuous thousand injections of hair samples with three internal standards (CV: <sup>103</sup>Rh = 3.59%, <sup>115</sup>In = 3.61%, and <sup>209</sup>Bi = 6.31%). 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引用次数: 0
摘要
无机元素在人体生化过程中具有独特的性质。越来越多的疾病与必需元素离子有关,如铅、汞和镉。毛发已成为研究外部环境元素纵向暴露的有吸引力的临床标本。电感耦合等离子体质谱法(ICP-MS)耦合硝酸消解法(HNO3)是测定头发中无机元素最常用的方法。本研究旨在优化利用ICP-MS对52种元素进行绝对定量的消解方法,用于人类头发的大规模队列研究。研究了5种不同的HNO3(65%)消解方法,即室温24 h (RT)、90℃4 h (T90)、超声辅助消解(UltraS)、微波消解程序消解(MicroD)和普通微波炉消解(O-MicroD),并对其内标液稳定性、重现性、元素覆盖率和标准液回收率进行了评价。结果表明,O-MicroD、MicroD和RT分别是变异系数(CV)评分、覆盖率和回收率最佳的消化方法。其中,O-MicroD法在少量毛发(3 mg)中检测到多种元素,硝酸用量最少(200 μl),消化时间短(30 min)。O-MicroD方法重复性好,用3种内标(CV: 103Rh = 3.59%, 115In = 3.61%, 209Bi = 6.31%)连续上千次注射头发样品,证明了该方法的重复性好。今后对头发元素含量的研究应仔细选择消解方法,以满足研究的主要目的。
An Evaluation of Different Digestion Methods for the Quantitation of Inorganic Elements in Human Hair Using ICP-MS.
The inorganic elements have unique properties in biochemical processes in humans. An increasing number of pathologies have been associated with essential element ions, such as lead, mercury, and cadmium. Hair has become an attractive clinical specimen for studying the longitudinal exposure to elements from the external environment. Inductively coupled plasma-mass spectrometry (ICP-MS) coupled with nitric acid (HNO3) digestion is the most common approach for determining inorganic elements from human hair. This study aims to optimize the digestion method for the absolute quantitation of 52 elements using ICP-MS, for a large cohort study in human hair. Five different HNO3 (65%) digestion methods were investigated and evaluated for their internal standard solution stability, reproducibility, element coverage, and standard solution recovery efficiency, namely, room temperature for 24 h (RT), 90°C for 4 h (T90), ultrasonic-assisted digestion (UltraS), programmed digestion of microwave digestion (MicroD), and ordinary microwave oven digestion (O-MicroD). Our results demonstrated that O-MicroD, MicroD, and RT were the best performing digestion methods for coefficient of variation (CV) scores, coverage, and recovery efficiency, respectively. In particular, the O-MicroD method detected multiple elements in a small quantity of hair (3 mg), with minimum nitric acid usage (200 μl) and a short digestion time (30 min). The O-MicroD method had excellent reproducibility, as demonstrated by a continuous thousand injections of hair samples with three internal standards (CV: 103Rh = 3.59%, 115In = 3.61%, and 209Bi = 6.31%). Future studies of the elemental content of hair should carefully select their digestion method to meet the primary purpose of their study.
期刊介绍:
Journal of Analytical Methods in Chemistry publishes papers reporting methods and instrumentation for chemical analysis, and their application to real-world problems. Articles may be either practical or theoretical.
Subject areas include (but are by no means limited to):
Separation
Spectroscopy
Mass spectrometry
Chromatography
Analytical Sample Preparation
Electrochemical analysis
Hyphenated techniques
Data processing
As well as original research, Journal of Analytical Methods in Chemistry also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.