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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Untargeted UPLC‐Q/TOF‐MS‐based metabolomics and inductively coupled plasma optical emission spectroscopic analysis reveal differences in the quality of ginger from two provinces in Zambia
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Untargeted UPLC‐Q/TOF‐MS‐based metabolomics and inductively coupled plasma optical emission spectroscopic analysis reveal differences in the quality of ginger from two provinces in Zambia

机译:基于Untargeted的UplC-Q / Tof-MS的代谢组和电感耦合等离子体光学发射光谱分析揭示了赞比亚两省的姜质量的差异

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Abstract Objectives This study sought to investigate the differences in the quality of dried ginger samples obtained from two places in Zambia, Lusaka and Copperbelt in terms of their secondary metabolite differences and heavy metals content. Methods Ten and eight batches of dried ginger obtained, respectively, from Lusaka and Copperbelt were analysed using untargeted Q/TOF‐MS‐based metabolomics and inductively coupled plasma optical emission spectroscopy (ICP‐OES). Key findings The metabolomics approach yielded 11 differential metabolites that clearly discriminated between the samples from the two locations. Eight were found to be more abundant in the samples from Lusaka while three were present in greater amounts in the samples from Copperbelt. The results of the heavy metal content analysis for four selected elements, Cd, Pb, As and Cu, showed that the samples from Copperbelt recorded higher levels. However, all samples contained levels of the toxic metals, Cd and Pb above permissible limits, making them unwholesome for human consumption. Conclusions The outcome of the heavy metal content analysis led us to speculate that abiotic stress as a result of these metals experienced by the ginger rhizomes during cultivation could have contributed to the metabolites abundance differences. Further studies are, however, recommended to verify this hypothesis.
机译:摘要目的这项研究试图调查在次级代谢物差异和重金属含量方面,从赞比亚,卢萨卡和铜带中获得的干姜样品质量的差异。方法使用基于未标准的Q / TOF-MS的代谢物和电感耦合的等离子体光发射光谱(ICP-OES)分析来自卢卡达和铜带的10和八批批次的干姜。主要发现代谢组种方法产生了11个差分代谢物,可以在两个地点的样品之间清晰地区分。发现八个在来自卢萨卡的样品中更丰富,而来自铜布的样品中的三种样品呈现出更多的量。四种选定元素,Cd,Pb,As和Cu的重金属含量分析的结果表明,来自铜带的样品记录了更高的水平。然而,所有样品含有上述毒性金属,CD和Pb的水平,使其无法为人类消费而无法篡改。结论重金属含量分析的结果导致我们推测由于姜根茎在培养过程中经历的这些金属可能导致代谢物丰富差异的结果。然而,建议进一步研究以验证这一假设。

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