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Antimicrobial and Phytochemical Evaluation of Calotropis procera (“SODOM APPLE”) against Human Pathogens

机译:抗菌和植物化学评估征召算对抗人病原体的征召算量(“Sodom Apple”)

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Aim:?To evaluate the antimicrobial and phytochemical effects of acetone, ethanol, methanol and??? aqueous leaf extracts of?Calotropis procera?on human pathogens.Study Design:?Five pathogenic and two fungi species were obtained from the Department of Biological Sciences, Afe Babalola University, Ado-Ekiti and were evaluated in?in vitro?antibacterial testing.Methodology:?We studied the?in vitro?antimicrobial sensitivity of?C. procera?by well in agar diffusion method. Also studied was the extract durability to ascertain expiration after preparation and the phytochemical constituents of the extracts by chemical methods.?Results:?The results revealed that acetone extract exhibited the highest antimicrobial properties on the test organisms followed by methanol, ethanol and aqueous extracts in that order. However,?Morganella morgani?was the most inhibited by the solvent extracts with zone of inhibition 45, 56, 59 and 43 mm by acetone, methanol, ethanol and aqueous extracts, respectively. The minimum inhibitory concentration (MIC) of acetone extract on bacteria species was between 25.0 and 100 mg/ml and between 25 and 50 mg/ml on the fungal species. Minimum bactericidal and fungicidal concentrations (MBC/MFC) of the extracts were valued at concentrations ranged from 50-100 mg/ml on the selected microorganisms. The durability study of the leaf extracts in consistent sensitivity pattern was potentially effective for 57-66 days. Phytochemical analysis of the leaf extract showed the presence of saponins, alkaloids, tannins, steroids, tarpenoids, flavonoids, phenolics and carotenoids. The results provide a partial support for the use of?C. procera?in traditional medicine.
机译:目的:?评估丙酮,乙醇,甲醇的抗微生物和植物化学效果含水叶片提取物?Calotropis procera?关于人道病原体。研究:α5致病和两种真菌物种是从生物科学系,AFE Babalola University,Ado-Ekiti进行,并在体外进行评估。抗菌试验。方法:?我们研究了吗?抗微生物敏感性?C。 Procera?在琼脂扩散方法中井井。还研究了提取耐久性,以确定制备后的效果和通过化学方法的提取物的植物化学成分。结果表明,丙酮提取物在试验生物中表现出最高的抗微生物性质,然后在甲醇,乙醇和含水提取物上表现出最高的抗微生物性质这个订单。然而,摩根菌摩根素是溶剂萃取物中最受抑制的抑制剂45,56,59和43mm的溶剂,分别是丙酮,甲醇,乙醇和含水提取物。在细菌物种上的丙酮提取物的最小抑制浓度(MIC)在真菌物种上介于25.0-100mg / mL之间,在25至50mg / ml之间。提取物的最小杀菌和杀真菌浓度(MBC / MFC)以所选微生物的50-100mg / ml的浓度值。叶子提取物在一致敏感模式下的耐久性研究可能有效57-66天。叶子提取物的植物化学分析显示皂苷,生物碱,单宁,类固醇,耳蛋白,类黄酮,酚类和类胡萝卜素的存在。结果提供了用于使用的部分载体。 procera?在传统医学中。

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