首页> 美国卫生研究院文献>other >Oxidation State Specific Generation of Arsines from Methylated Arsenicals Based on L- Cysteine Treatment in Buffered Media for Speciation Analysis by Hydride Generation - Automated Cryotrapping - Gas Chromatography-Atomic Absorption Spectrometry with the Multiatomizer
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Oxidation State Specific Generation of Arsines from Methylated Arsenicals Based on L- Cysteine Treatment in Buffered Media for Speciation Analysis by Hydride Generation - Automated Cryotrapping - Gas Chromatography-Atomic Absorption Spectrometry with the Multiatomizer

机译:基于L-半胱氨酸处理的甲基化砷化物在缓冲液中的氢化态生成-自动冷冻裂解-气相色谱-原子吸收光谱法通过缓冲液中的L-半胱氨酸处理生成砷化氢。

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摘要

An automated system for hydride generation - cryotrapping- gas chromatography - atomic absorption spectrometry with the multiatomizer is described. Arsines are preconcentrated and separated in a Chromosorb filled U-tube. An automated cryotrapping unit, employing nitrogen gas formed upon heating in the detection phase for the displacement of the cooling liquid nitrogen, has been developed. The conditions for separation of arsines in a Chromosorb filled U-tube have been optimized. A complete separation of signals from arsine, methylarsine, dimethylarsine, and trimethylarsine has been achieved within a 60 s reading window. The limits of detection for methylated arsenicals tested were 4 ng l−1. Selective hydride generation is applied for the oxidation state specific speciation analysis of inorganic and methylated arsenicals. The arsines are generated either exclusively from trivalent or from both tri- and pentavalent inorganic and methylated arsenicals depending on the presence of L-cysteine as a prereductant and/or reaction modifier. A TRIS buffer reaction medium is proposed to overcome narrow optimum concentration range observed for the L-cysteine modified reaction in HCl medium. The system provides uniform peak area sensitivity for all As species. Consequently, the calibration with a single form of As is possible. This method permits a high-throughput speciation analysis of metabolites of inorganic arsenic in relatively complex biological matrices such as cell culture systems without sample pretreatment, thus preserving the distribution of tri- and pentavalent species.
机译:描述了使用多雾化器生成氢化物的自动系统-低温捕集-气相色谱-原子吸收光谱法。在充满Chromosorb的U型管中预浓缩和分离氨酸。已经开发出一种自动低温捕集单元,该单元使用在检测阶段加热时形成的氮气置换冷却液氮。已优化在装满Chromosorb的U型管中分离砷化氢的条件。在60 s的读取窗口内,已将a,甲基ar,二甲基ar和三甲基ar的信号完全分离。测试的甲基化砷的检出限为4 ng l -1 。选择性氢化物的产生被用于无机和甲基化砷的氧化态特异性形态分析。取决于L-半胱氨酸作为预还原剂和/或反应调节剂的存在,a氨酸仅由三价或三价和五价无机和甲基化砷生成。提出了TRIS缓冲反应介质,以克服在HCl介质中观察到的L-半胱氨酸修饰反应的最窄最佳浓度范围。该系统为所有砷物种提供统一的峰面积灵敏度。因此,可以使用单一形式的As进行校准。该方法无需样品预处理即可在相对复杂的生物基质(例如细胞培养系统)中对无机砷的代谢产物进行高通量物种分析,从而保留了三价和五价物种的分布。

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