Institute of Toxicology, Federal Medico-Biological Agency of Russia, Russian Federation, ul. Behtereva, 1, 192019 Saint Petersburg, Russia.
Arch Environ Contam Toxicol. 2012 Oct;63(3):299-308. doi: 10.1007/s00244-012-9784-1. Epub 2012 Aug 7.
Determination of aluminum (Al), beryllium (Be), cadmium (Cd), chromium (Cr), mercury (Hg), manganese (Mn), nickel (Ni), lead (Pb), and thallium (Tl) concentrations in human blood using high-frequency modulation polarization Zeeman graphite furnace atomic absorption spectrometry (GFAAS) was performed. No sample digestion was used in the current study. Blood samples were diluted with deionized water or 0.1 % (m/v) Triton X-100 solution for Tl. Dilution factors ranged from 1/5 per volume for Be and Tl to 1/20 per volume for Cd and Pb. For Tl, Cd, and Hg, noble metals (gold, platinum, rhodium, etc.) were applied as surface modifiers. To mitigate chloride interference, 2 % (m/v) solution of NH(4)NO(3) was used as matrix modifier for Tl and Ni assessment. The use of Pd(NO(3))(2) as oxidative modifier was necessary for blood Hg and Tl measurement. Validation of the methods was performed by analyzing two-level reference material Seronorm. The precision of the designed methods as relative SD was between 4 and 12 % (middle of a dynamic range) depending on the element. For additional validation, spiked blood samples were analyzed. Limits of detection (LoDs, 3σ, n = 10) for undiluted blood samples were 2.0 μg L(-1) for Al, 0.08 μg L(-1) for Be, 0.10 μg L(-1) for Cd, 2.2 μg L(-1) for Cr, 7 μg L(-1) for Hg, 0.4 μg L(-1) for Mn, 2.3 μg L(-1) for Ni, 3.4 μg L(-1) for Pb, and 0.5 μg L(-1) for Tl. The LoDs achieved allowed determination of Al, Cd, Cr, Mn, Ni, and Pb at both toxic and background levels. Be, Hg, and Tl could be reliably measured at toxic levels only. The methods developed are used for clinical diagnostics and biological monitoring of work-related exposure.
采用高频调制偏振 Zeeman 石墨炉原子吸收光谱法(GFAAS)测定人血中的铝(Al)、铍(Be)、镉(Cd)、铬(Cr)、汞(Hg)、锰(Mn)、镍(Ni)、铅(Pb)和铊(Tl)浓度。本研究未使用样品消解。对于 Tl,用去离子水或 0.1%(m/v)Triton X-100 溶液稀释血液样本。稀释因子范围从 Be 和 Tl 的 1/5 体积到 Cd 和 Pb 的 1/20 体积。对于 Tl、Cd 和 Hg,使用贵金属(金、铂、铑等)作为表面修饰剂。为了减轻氯化物干扰,对于 Tl 和 Ni 的评估,使用 2%(m/v)NH (4 )NO (3 )溶液作为基质修饰剂。对于血液 Hg 和 Tl 的测量,需要使用 Pd(NO (3 )) (2 )作为氧化修饰剂。通过分析两个水平的参考物质 Seronorm 来验证方法的准确性。所设计方法的精密度(相对标准偏差,SD)在 4%到 12%之间(取决于元素),处于动态范围的中间。为了进一步验证,分析了加标血液样本。未稀释血液样本的检测限(LoD,3σ,n=10)分别为 Al 为 2.0μg L (-1 )、Be 为 0.08μg L (-1 )、Cd 为 0.10μg L (-1 )、Cr 为 2.2μg L (-1 )、Hg 为 7μg L (-1 )、Mn 为 0.4μg L (-1 )、Ni 为 2.3μg L (-1 )、Pb 为 3.4μg L (-1 )和 Tl 为 0.5μg L (-1 )。所达到的 LoD 允许在毒性和背景水平下测定 Al、Cd、Cr、Mn、Ni 和 Pb。仅能在毒性水平上可靠地测定 Be、Hg 和 Tl。所开发的方法用于临床诊断和工作相关暴露的生物监测。