Rodriguez Martín-Doimeadios R C, Krupp E, Amouroux D, Donard O F X
Laboratoire de Chimie Analytique Bio-Inorganique et Environnement, CNRS UMR 5034, Université de Pau et des Pays de l'Adour, Hélioparc, France.
Anal Chem. 2002 Jun 1;74(11):2505-12. doi: 10.1021/ac011157s.
An isotope dilution (ID) procedure for the determination of methylmercury (MMHg) in biological samples using an inductively coupled plasma mass spectrometer as detector after the capillary gas chromatographic separation (CGC/ICPMS) has been developed. For the first time, open-focused-microwave pretreatment has been used in conjunction with ID. Optimum conditions for the measurement of isotope ratios on the fast transient chromatographic peaks have been established. Mass bias was found to be about 1.5%/mass unit and was corrected by using the simultaneously measured thallium signals at 203Tl and 205Tl. After mass-bias correction, deviation of the theoretical mercury ratio values was found to be as low as 0.2%. Isotope ratio precisions based on the peak areas measurements were 0.3% RSD for 20 pg injected (as Hg absolute). The absolute detection limits were in the range of 20-30 fg for 202Hg and 201Hg. Methylmercury enriched in 201Hg has been synthesized by direct reaction with methylcobalamine. The concentration of the MMHg spike has been measured by reverse isotope dilution with a natural MMHg standard. The capabilities of CGC/ICPMS to measure isotope ratios were used to optimize sample derivatization by aqueous ethylation with NaBEt4 with respect to MMHg degradation pathways and quantitative recovery. The accuracy of the method developed has been validated with biological certified reference materials (CRM-463, DORM-1).
已开发出一种同位素稀释(ID)程序,用于在毛细管气相色谱分离(CGC/ICPMS)后,使用电感耦合等离子体质谱仪作为检测器测定生物样品中的甲基汞(MMHg)。首次将开放式聚焦微波预处理与ID结合使用。已建立了在快速瞬态色谱峰上测量同位素比的最佳条件。发现质量偏差约为1.5%/质量单位,并通过同时测量203Tl和205Tl处的铊信号进行校正。经过质量偏差校正后,发现理论汞比值的偏差低至0.2%。基于峰面积测量的同位素比精密度对于注入20 pg(以Hg绝对值计)为0.3% RSD。202Hg和201Hg的绝对检测限在20 - 30 fg范围内。通过与甲基钴胺素直接反应合成了富含201Hg的甲基汞。通过用天然MMHg标准进行反向同位素稀释来测量MMHg加标物的浓度。利用CGC/ICPMS测量同位素比的能力,针对MMHg降解途径和定量回收率,通过用NaBEt4进行水相乙基化来优化样品衍生化。所开发方法的准确性已通过生物认证参考物质(CRM - 463,DORM - 1)进行了验证。