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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Emodin is identified as the active component of ether extracts from Rhizoma Polygoni Cuspidati, for anti-MRSA activity
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Emodin is identified as the active component of ether extracts from Rhizoma Polygoni Cuspidati, for anti-MRSA activity

机译:大黄素被鉴定为虎杖中醚提取物的抗MRSA活性成分

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摘要

This study investigated the anti-methicillin-resistant Staphylococcus aureus (anti-MRSA) activity and chemical compositions of ether extracts from Rhizoma Polygoni Cuspidati (ET-RPC). Significant anti-MRSA activities of ET-RPC against MRSA252 and MRSA clinical strains were tested in in vitro antibacterial experiments, such as inhibition zone diameter test, minimal inhibitory concentration test, and dynamic bacterial growth assay. Subsequently, 7 major compounds of ET-RPC were purified and identified as polydatin, resveratrol-4-O-D-(6'-galloyl)-glucopyranoside, resveratrol, torachryson-8-O-glucoside, emodin-8-O-glucoside, 6-hydroxy-emodin, and emodin using liquid chromatography - electrospray ionization - tandem mass spectrometry. After investigation of anti-MRSA activities of the 7 major compounds, only emodin had significant anti-MRSA activity. Further, transmission electron microscopy was used to observe morphological changes in the cell wall of MRSA252, and the result revealed that emodin could damage the integrity of cell wall, leading to loss of intracellular components. In summary, our results showed ET-RPC could significantly inhibit bacterial growth of MRSA strains. Emodin was identified as the major compound with anti-MRSA activity; this activity was related to destruction of the integrity of the cell wall and cell membrane.
机译:这项研究调查了抗甲氧西林金黄色葡萄球菌(抗MRSA)的活性和虎杖(ET-RPC)醚提取物的化学成分。 ET-RPC对MRSA252和MRSA临床菌株的显着抗MRSA活性在体外抗菌实验中进行了测试,例如抑制区直径测试,最小抑菌浓度测试和动态细菌生长分析。随后,纯化了7种主要的ET-RPC化合物,并将其鉴定为白藜芦醇,白藜芦醇-4-OD-(6'-galloyl)-吡喃葡萄糖苷,白藜芦醇,torrachryson-8-O-葡萄糖苷,大黄素-8-O-葡萄糖苷,6 -羟基大黄素和大黄素使用液相色谱-电喷雾电离-串联质谱。在研究了7种主要化合物的抗MRSA活性后,只有大黄素具有显着的抗MRSA活性。此外,用透射电子显微镜观察了MRSA252细胞壁的形态变化,结果表明大黄素可能破坏细胞壁的完整性,导致细胞内成分的损失。总之,我们的结果表明,ET-RPC可以显着抑制MRSA菌株的细菌生长。大黄素被鉴定为具有抗MRSA活性的主要化合物。这种活性与细胞壁和细胞膜完整性的破坏有关。

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