Tran Minh Nhat, Kim Soyoung, Nguyen Quynh Hoang Ngan, Lee Sanghun
Korean Medicine Data Division, Korea Institute of Oriental Medicine, Daejeon 34054, Korea.
Korean Convergence Medical Science, University of Science and Technology, Daejeon 34113, Korea.
Plants (Basel). 2022 Sep 21;11(19):2470. doi: 10.3390/plants11192470.
Qi-invigorating herbs (QIHs) are a group of herbs that invigorate Qi, the most vital force for maintaining the physiological functions of the human body in traditional medicine. However, the mechanism underlying the Qi-invigorating effects remains unclear. This study aimed to elucidate the unique mechanisms of QIHs based on unique compounds, using a network pharmacology approach. QIHs and their compounds were identified using existing literature and the TCMSP database, respectively. Subsequently, a method was proposed to screen for unique compounds that are common in QIHs but rare in other traditional herbs. Unique compounds' targets were predicted using the TCMSP, BATMAN-TCM, and SwissTargetPrediction databases. Finally, enriched GO and KEGG pathways were obtained using DAVID to uncover the biomolecular functions and mechanisms. Thirteen unique compounds, mainly including amino acids and vitamins that participate in energy metabolism and improve Qi deficiency syndrome, were identified among the eight QIHs. GO and KEGG pathway analyses revealed that these compounds commonly participate in neuroactive ligand-receptor interaction and the metabolism of amino acids, and are related to the components of mitochondria and neuronal cells. Our results appropriately reflect the characteristics of traditional Qi-invigorating effects; therefore, this study facilitates the scientific interpretation of Qi functions and provides evidence regarding the treatment effectiveness of QIHs.
补气药是一类在传统医学中能补益人体维持生理功能的最关键物质——气的草药。然而,补气作用的潜在机制仍不清楚。本研究旨在采用网络药理学方法,基于独特的化合物阐明补气药的独特机制。分别利用现有文献和中药系统药理学数据库(TCMSP)鉴定补气药及其化合物。随后,提出了一种筛选补气药中常见但在其他传统草药中罕见的独特化合物的方法。利用TCMSP、中药靶点预测(BATMAN-TCM)和瑞士靶点预测数据库预测独特化合物的靶点。最后,使用DAVID获得富集的基因本体论(GO)和京都基因与基因组百科全书(KEGG)通路,以揭示生物分子功能和机制。在8种补气药中鉴定出13种独特化合物,主要包括参与能量代谢和改善气虚证的氨基酸和维生素。GO和KEGG通路分析表明,这些化合物通常参与神经活性配体-受体相互作用和氨基酸代谢,并且与线粒体和神经细胞的成分有关。我们的结果恰当地反映了传统补气作用的特点;因此,本研究有助于对气功能进行科学解释,并为补气药的治疗效果提供证据。