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流动注射在线稀释-电热原子吸收光谱法测定人唾液中的锌

Flow injection on-line dilution for zinc determination in human saliva with electrothermal atomic absorption spectrometry detection.

作者信息

Burguera-Pascu Margarita, Rodríguez-Archilla Alberto, Burguera José Luis, Burguera Marcela, Rondón Carlos, Carrero Pablo

机构信息

Department of Oral Medicine, School of Dentistry, University of Granada, Granada, Spain.

出版信息

Anal Chim Acta. 2007 Sep 26;600(1-2):214-20. doi: 10.1016/j.aca.2006.10.021. Epub 2006 Oct 19.

Abstract

An automated method is described for the determination of zinc in human saliva by electrothermal atomic absorption spectrometry (ET AAS) after on-line dilution of samples with a significant reduction of sample consumption per analysis (<0.4 mL including the dead volume of the system). In order to fulfill this aim without changing the sample transport conduits during the experiments, a flow injection (FI) dilution system was constructed. Its principal parts are: one propulsion device (peristaltic pump, PP) for either samples, standards or washing solution all located in an autosampler tray and for the surfactant solution (Triton X-100) used as diluent, and a two-position time based solenoid injector (TBSI(1)) which allowed the introduction of 10 microL of either solution in the diluent stream. To avoid unnecessary waste of samples, the TBSI(1) also permitted the recirculation of the solutions to their respective autosampler cups. The downstream diluted solution fills a home made sampling arm assembly. The sequential deposition of 20 microL aliquots of samples or standards on the graphite tube platform was carried out by air displacement with a similar time based solenoid injector (TBSI(2)). The dilution procedure and the injection of solutions into the atomizer are computer controlled and synchronized with the operation of the temperature program. Samples or standards solutions were submitted to two drying steps (at 90 and 130 degrees C), followed by pyrolysis and atomization at 700 and 1700 degrees C, respectively. The aqueous calibration was linear up to 120.0 microgL(-1) for diluted standard solutions/samples and its slope was similar (p>0.05) to the standard addition curve, indicating lack of matrix effect. The precision tested by repeated analysis of real saliva samples was less than 3% and the detection limit (3sigma) was of 0.35 microgL(-1). To test the accuracy of the proposed procedure, recovery tests were performed, obtaining mean recovery of added zinc of 97.8+/-1.3%. Furthermore, Zn values estimated by the procedure developed in this work were compared with those obtained by a standard addition flame-AAS method applied to 20 randomly selected saliva samples. No significant differences (p>0.05) were obtained between the two methods. Zinc levels in saliva samples from 44 healthy volunteers, 15 male and 29 female, with ages between 20 and 51 years (mean 30.50+/-9.14 years) were in the range 22-98 microgL(-1) (mean of 55+/-17 microgL(-1)), similar to some and different from others reported in the literature. It was found that zinc values for male were statistically higher (p=0.006) than for female.

摘要

本文描述了一种自动化方法,通过电热原子吸收光谱法(ET AAS)测定人类唾液中的锌含量。该方法在对样品进行在线稀释后,每次分析的样品消耗量显著减少(<0.4 mL,包括系统死体积)。为了在实验过程中不改变样品传输管道来实现这一目标,构建了一个流动注射(FI)稀释系统。其主要部件包括:一个推进装置(蠕动泵,PP),用于放置在自动进样器托盘上的样品、标准品或清洗溶液,以及用作稀释剂的表面活性剂溶液(Triton X-100);还有一个基于时间的二位电磁阀进样器(TBSI(1)),它能够将10 μL的任何一种溶液引入稀释剂流中。为避免不必要的样品浪费,TBSI(1)还允许溶液回流到各自的自动进样器杯中。下游的稀释溶液填充自制的采样臂组件。通过基于时间的类似电磁阀进样器(TBSI(2))利用空气置换,将20 μL的样品或标准品等分试样依次沉积在石墨管平台上。稀释过程以及将溶液注入雾化器均由计算机控制,并与温度程序的操作同步。样品或标准溶液先经过两个干燥步骤(90℃和130℃),然后分别在700℃和1700℃进行热解和原子化。对于稀释后的标准溶液/样品,水溶液校准在高达120.0 μg L⁻¹时呈线性,其斜率与标准加入曲线相似(p>0.0

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