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Detection of adulterated drugs in traditional Chinese medicine and dietary supplements using hydrogen as a carrier gas

机译:使用氢气作为载气检测中药和膳食补充剂中的adult杂药物

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摘要

Helium, a minor component of natural gas and radioactive minerals, is most commonly used as a carrier in gas chromatography-mass spectrometry (GC-MS). Its scarcity leads to limited availability and higher costs. In this experiment, hydrogen from a safe source of a hydrogen generator was tested as a substitutive carrier gas for the detection of adulterant in traditional Chinese medicine (TCM) and food supplements by GC-MS analysis. We found that the limits of detection (LODs) of using hydrogen were from 10 to 1000 μg/g. The levels of LODs tested among 170 drugs remain the same whether hydrogen or helium was used as a carrier gas with the exception of 7 drugs—benzbromarone, estradiol benzoate, bezafibrate, mefenamic acid, oxymetholone, piperidenafil and cetilistat. The real sample analysis results using hydrogen were as satisfactory as those using helium. In addition, the retention time was shortened after the chromatographic performance was optimized. In summary, it is worth considering hydrogen as a carrier gas due to its affordable costs, energy efficiency, carbon reduction and chromatographic advantages to detect adulterated drugs in TCM and dietary supplement using GC-MS.
机译:氦气是天然气和放射性矿物质中的次要成分,在气相色谱-质谱法(GC-MS)中最常用作载体。它的稀缺性导致有限的可用性和更高的成本。在该实验中,测试了来自氢气发生器安全来源的氢气作为替代性载气,用于通过GC-MS分析检测中药(TCM)和食品补充剂中的掺假。我们发现使用氢的检测限(LOD)为10至1000μg/ g。无论使用氢气还是氦气作为载气,在170种药物中测试的LOD的水平均保持不变,但以下7种药物除外:苯溴马隆,雌二醇苯甲酸酯,苯扎贝特酸盐,甲芬那酸,羟甲酮,哌替那非和西替司他。使用氢气的真实样品分析结果与使用氦气的结果一样令人满意。此外,色谱性能得到优化后,保留时间缩短了。总而言之,值得考虑使用氢作为载气,因为它具有价格合理的成本,能效,碳减少和色谱的优势,可以使用GC-MS检测中药和膳食补充剂中的掺假药物。

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