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“-组学”技术在植物医学中的应用。

Application of the "-Omic-" technologies in phytomedicine.

作者信息

Ulrich-Merzenich G, Zeitler H, Jobst D, Panek D, Vetter H, Wagner H

机构信息

Medical Policlinic of Rheinische Friedrich-Wilhelms-University of Bonn, Wilhelmstr. 35-37, D-53111 Bonn, Germany.

出版信息

Phytomedicine. 2007 Jan;14(1):70-82. doi: 10.1016/j.phymed.2006.11.011.

Abstract

The proof of efficacy of phytopreparations and the determination of their mode of action are permanent challenges for an evidence-based phytotherapy. The technology platform of genomics, proteomics and metabolomics ("-omic-" technologies) are high-throughput technologies. They increase substantially the number of proteins/genes that can be detected simultaneously and have the potential to relate complex mixtures to complex effects in the form of gene/protein expression profiles. Provided that phytopreparation-specific signatures in the form of gene/protein expression profiles can be developed, these technologies will be useful for the chemical and pharmacological standardization and the proof of the toxicological potential of a plant extract. Over a long-term perspective they may economize the proof of efficacy, the determination of the mode of action of phytomedicines and allow to investigate herbal extracts without prominent active principle(s). The application of this genomics revealed already that gene expression profiles induced by single drugs and the ones induced by the combination of the same drugs can be entirely different. These results make the information of the mode of action of isolated "active principles/lead substances" of phytopreparations questionable. The application of the "-omic-" technologies may lead to a change of paradigms towards the application of complex mixtures in medicine and open the new field of phytogenomics, -proteomics and -metabolomics.

摘要

植物制剂疗效的证明及其作用方式的确定,对于循证植物疗法而言始终是挑战。基因组学、蛋白质组学和代谢组学技术平台(“组学”技术)是高通量技术。它们大幅增加了可同时检测的蛋白质/基因数量,并有可能以基因/蛋白质表达谱的形式将复杂混合物与复杂效应联系起来。倘若能够建立以基因/蛋白质表达谱形式呈现的植物制剂特异性特征,这些技术将有助于植物提取物的化学和药理学标准化以及毒理学潜力的证明。从长远来看,它们可能会简化疗效证明过程,确定植物药的作用方式,并能够研究没有显著活性成分的草药提取物。这种基因组学的应用已经表明,单一药物诱导的基因表达谱与相同药物组合诱导的基因表达谱可能完全不同。这些结果使得植物制剂中分离出的“活性成分/先导物质”的作用方式信息受到质疑。“组学”技术的应用可能会导致医学上应用复杂混合物的范式转变,并开启植物基因组学、蛋白质组学和代谢组学的新领域。

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