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Chemical Constituents from the Rhizomes of Smilax glabra and Their Antimicrobial Activity

机译:mil草根茎的化学成分及其抑菌活性

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摘要

Six new phenolic compounds, named smiglabrone A (>1), smiglabrone B (>2), smilachromanone (>3), smiglastilbene (>4), smiglactone (>5), smiglabrol (>6), together with fifty-seven known ones >7–>6>3were isolated from the rhizomes of Smilax glabra. Their structures were elucidated on the basis of extensive spectroscopic analyses, as well as by comparison with literature data. Twenty-seven of these compounds were obtained from and identified in the genus Smilax for the first time. The absolute configuration of (2S)-1,2-O-di-trans-p-coumaroylglycerol (>43) was determined for the first time using the exciton-coupled circular dichroism (ECCD) method. Thirty isolated compounds were evaluated for their antimicrobial activity against three Gram-negative bacteria, three Gram-positive bacteria and one fungus, and the corresponding structure-activity relationships were also discussed. Eighteen compounds were found to be antimicrobial against the microorganisms tested and the minimum inhibitory concentrations (MIC) were in the range of 0.0794–3.09 mM. Among them, compound >1 showed antimicrobial activity against Canidia albicans with MIC value of 0.146 mM, which was stronger than cinchonain Ia with an MIC of 0.332 mM. Compounds >3 and >4 exhibited inhibitory activity against Staphylococcus aureus with MIC values of 0.303 and 0.205 mM, respectively. The results indicated that these antimicrobial constituents of this crude drug might be responsible for its clinical antimicrobial effect.
机译:六种新的酚类化合物,分别名为smiglabrone A(> 1 ),smiglabrone B(> 2 ),smilachromanone(> 3 ),smiglastilbene(> 4 ),smiglactone(> 5 ),smiglabrol(> 6 )以及57个已知的> 7 – > 6 > 3 是从中华mil的根茎中分离出来的。根据广泛的光谱分析以及与文献数据的比较,阐明了它们的结构。这些化合物中有27种是首次从Smilax属中鉴定出来的。 (2S)-1,2-O-二-反式-对-香豆酰甘油(> 43 )的绝对构型是使用激子耦合圆二色性(ECCD)方法首次确定的。评价了三十种分离的化合物对三种革兰氏阴性菌,三种革兰氏阳性菌和一种真菌的抗菌活性,并讨论了其相应的构效关系。发现有18种化合物对所测试的微生物具有抗菌作用,最小抑菌浓度(MIC)在0.0794–3.09 mM之间。其中,化合物> 1 显示出对白色念珠菌的抗菌活性,MIC值为0.146 mM,比金鸡奈恩Ia的MIC值为0.332 mM强。化合物> 3 和> 4 对金黄色葡萄球菌具有抑制活性,MIC值分别为0.303和0.205 mM。结果表明,该粗药物的这些抗菌成分可能是其临床抗菌作用的原因。

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