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首页> 外文期刊>Molecules >A Phytochemical-Sensing Strategy Based on Mass Spectrometry Imaging and Metabolic Profiling for Understanding the Functionality of the Medicinal Herb Green Tea
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A Phytochemical-Sensing Strategy Based on Mass Spectrometry Imaging and Metabolic Profiling for Understanding the Functionality of the Medicinal Herb Green Tea

机译:基于质谱成像和代谢谱分析的植物化学传感策略,用于了解药用绿茶的功能

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Low-molecular-weight phytochemicals have health benefits and reduce the risk of diseases, but the mechanisms underlying their activities have remained elusive because of the lack of a methodology that can easily visualize the exact behavior of such small molecules. Recently, we developed an in situ label-free imaging technique, called mass spectrometry imaging, for visualizing spatially-resolved biotransformations based on simultaneous mapping of the major bioactive green tea polyphenol and its phase II metabolites. In addition, we established a mass spectrometry-based metabolic profiling technique capable of evaluating the bioactivities of diverse green tea extracts, which contain multiple phytochemicals, by focusing on their compositional balances. This methodology allowed us to simultaneously evaluate the relative contributions of the multiple compounds present in a multicomponent system to its bioactivity. This review highlights small molecule-sensing techniques for visualizing the complex behaviors of herbal components and linking such information to an enhanced understanding of the functionalities of multicomponent medicinal herbs. View Full-Text
机译:低分子量植物化学物质具有健康益处并降低了患病风险,但由于缺乏能够轻松形象地观察此类小分子确切行为的方法,其活动所依据的机制仍然难以捉摸。最近,我们开发了一种称为质谱成像的原位无标签成像技术,用于基于主要生物活性绿茶多酚及其II期代谢物的同时作图来可视化空间分辨的生物转化。此外,我们建立了基于质谱的代谢谱分析技术,通过关注其组成平衡,可以评估包含多种植物化学物质的多种绿茶提取物的生物活性。这种方法使我们能够同时评估多组分系统中存在的多种化合物对其生物活性的相对贡献。这篇综述着重介绍了小分子传感技术,以可视化草药成分的复杂行为,并将这些信息与对多成分草药功能的增强理解联系起来。查看全文

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