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An Interface for Direct Analysis of ~(14)C in Nonvolatile Samples by Accelerator Mass Spectrometry

机译:通过加速器质谱直接分析非易失性样品中〜(14)C的界面

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We describe here apparatus and methods for direct analysis of ~(14)C in biological specimens by accelerator mass spectrometry (AMS). Liquid samples, including plasma and urine, are deposited by pipet into a bed of CuO powder that fills a space within a rigid, refractory support. Volatile components are removed under reduced pressure prior to analysis. The CuO matrix is locally heated with an infrared laser while it is contained within a sealed chamber that is swept with He carrier gas. Heating induces combustion of the applied sample, and the carrier gas transports the CO_(2) that is formed to the AMS instrument's ion source, which is appropriately modified for use with CO_(2). A rodent study of drug clearance with [~(14)C]-acetaminophen was performed to provide plasma and urine specimens, which were analyzed with this overall approach and by liquid scintillation counting for comparison. Results presented here confirm the potential utility of laser-induced sample combustion as an alternative to graphite production for AMS analysis of ~(14)C. Anticipated benefits of the present approach include reduced risk of sample cross-contamination, decreased analysis time, and greater compatibility with robotics.
机译:我们在这里描述了通过加速器质谱(AMS)直接分析生物样本中〜(14)C的装置和方法。用移液管将包括血浆和尿液在内的液体样品沉积到填充刚性耐火载体内空间的CuO粉末床中。在分析之前,减压除去挥发性成分。 CuO基质被包含在被He载气吹扫的密闭室内时,用红外激光对其进行局部加热。加热引起所施加样品的燃烧,载气将形成的CO_(2)传输到AMS仪器的离子源,该离子源经过适当修改后可与CO_(2)一起使用。用[〜(14)C]-对乙酰氨基酚进行了啮齿动物药物清除研究,以提供血浆和尿液样本,并使用这种整体方法和液体闪烁计数法对其进行分析以进行比较。此处呈现的结果证实了激光诱导的样品燃烧作为〜(14)C AMS分析的石墨生产的替代品的潜在效用。本方法的预期好处包括降低样品交叉污染的风险,减少分析时间以及与机器人技术的更大兼容性。

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