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首页> 外文期刊>American Journal of Plant Sciences >Phytochemical Screening and Antimicrobial Activity of &i&Desmodium ramosissimum&/i&
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Phytochemical Screening and Antimicrobial Activity of &i&Desmodium ramosissimum&/i&

机译:i.Desmodium ramosissimum / i的植物化学筛选和抗菌活性。

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摘要

Microbial infections threaten the health of the Beninese population. Objectives : To identify bioactive phytochemical groups and evaluate the antimicrobial activity of Desmodium ramosissimum used in traditional medicine in Benin against microbial infections. Methodology & Results : The classic reactions in solution helped highlight alkaloids, anthocyanins, flavonoids, quinones, saponins, steroids, tannins, terpenoids, mucilage, Coumarin, reducing compounds, anthracene, glycosides. The antibacterial activity was evaluated by extracts dilution’s method (ethanol extracts, methanol extracts and hexane extracts). The methanol extract inhibited the growth of all tested germs, with a significant effect on E. coli and S. aureus strains whose MIC values are equal to 1.25 mg/ml. On the contrary, this extract has a low activity on P. vulgaris strain with a MIC of 10 mg/ml. The ethanol extract also inhibited the growth of all the tested strains, but with more intense activity than the methanol extract. The strains of C. albicans and S. oralis were more sensitive to the extract with 0.625 mg/ml for MIC, while S. aureus and P. vulgaris were less sensitive (MIC = 5 mg/ml). The residual ethanol extract exerted inhibition on all microorganisms at a concentration of 20 mg/ml, except the strain of E. foecalis that was resistant. Conclusion & Applications : This study shows that besides its food virtues of this plant, there are antibacterial and antifungal properties.
机译:微生物感染威胁着贝宁人口的健康。 目的:确定生物活性植物化学基团并评估贝宁传统医学中使用的Desmodium ramosissimum对微生物感染的抗菌活性。 方法与结果:溶液中的经典反应有助于突出生物碱,花色苷,类黄酮,醌,皂角苷,类固醇,丹宁酸,萜类化合物,粘液,香豆素,还原性化合物,蒽,糖苷。通过提取物稀释法(乙醇提取物,甲醇提取物和己烷提取物)评估抗菌活性。甲醇提取物抑制所有测试细菌的生长,对MIC值等于1.25 mg / ml的大肠杆菌和金黄色葡萄球菌菌株具有显着影响。相反,该提取物对寻常型毕赤酵母菌株具有低活性,MIC为10mg / ml。乙醇提取物也抑制了所有测试菌株的生长,但比甲醇提取物具有更强的活性。白色念珠菌和口头链霉菌的菌株对提取物更敏感,MIC为0.625 mg / ml,而金黄色葡萄球菌和寻常型毕赤酵母的敏感性较低(MIC = 5 mg / ml)。残留的乙醇提取物以20 mg / ml的浓度对所有微生物产生抑制作用,但对粪肠球菌具有抗性的菌株除外。 结论与应用:这项研究表明,除了这种植物的食物优点以外,还具有抗菌和抗真菌特性。

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