探索肯尼叶提取物对部分微生物菌株的抗菌功效

Henry Githinji, P. K. Njenga
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摘要

为了从天然资源中寻找新型生物活性化合物,我们对 Embelia keniensis 叶提取物的抗菌特性和植物化学成分进行了评估。Embelia keniensis 是肯尼亚特有的五种 Myrsinaceae 植物之一。对 Embelia keniensis 粗提取物进行科学研究的兴趣是基于其有效用于治疗胸痛、普通感冒和胃病等多种疾病的说法。本研究中使用的植物来自肯尼亚中部基安布县利穆鲁子县的布拉肯赫斯特植物园。研究于 2023 年 1 月至 3 月在乔莫-肯雅塔农业和技术大学进行。研究旨在评估这种植物的粗提取物对大肠杆菌、金黄色葡萄球菌和白色念珠菌的抗菌潜力。抗菌活性通过盘扩散法测定。萃取时使用了甲醇和水,但这两种提取物对试验生物都没有显示出良好的活性。值得注意的是,与甲醇提取物相比,水提取物对大肠杆菌表现出更强的效力。在浓度为 1 毫克/毫升时,水提取物的最大抑制区为 9 毫米。对金黄色葡萄球菌和白色念珠菌也有类似的结果,在相同浓度下,抑制区分别为 9 毫米和 7 毫米。初步植物化学筛选确定了皂苷和类黄酮等生物活性物质的存在,而单宁酸和萜类化合物则不存在。尽管观察到了抑制区,但植物提取物并没有达到临床和实验室标准研究所规定的易感性断点和中间水平。相反,它们表现出耐药性断点,使植物提取物的抗菌活性失效。尽管如此,这一结果并没有否定植物提取物的潜力。作用模式和微生物易感性等因素可能会影响其有效性。要全面了解恩贝藻提取物的潜力,还需要进一步的评估。本研究提供了对其抗菌活性的深入了解以及初步的植物化学概况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the Antimicrobial Efficacy of Embelia Keniensis Leaf Extracts against Selected Microbial Strains
The pursuit of novel bioactive compounds from natural sources has prompted an assessment of the antimicrobial properties and phytochemical composition of Embelia keniensis leaf extracts. Embelia keniensis is one of the five Myrsinaceae species endemic to Kenya. The interest in the scientific investigation of Embelia keniensis crude extracts is based on the claims of their effective use for the treatment of many diseases such as chest pains, common cold and stomach ailments. The plants used in this study were derived from Brackenhurst Botanical Garden Limuru sub-county, Kiambu County, central Kenya. The study was conducted from January to March 2023 at the Jomo Kenyatta University of Agriculture and Technology. The study aimed to evaluate the antimicrobial potential of crude extracts of this plant against Escherichia coli, Staphylococcus aureus, and Candida albicans. The antimicrobial activity was determined through the disc diffusion method. Both methanol and water were employed for extraction; however, neither demonstrated promising activities against the test organisms. Notably, the water extract exhibited greater potency compared to the methanolic extract against Escherichia coli. The water extract displayed a maximum inhibition zone of 9mm at a concentration of 1mg/ml. similar findings were observed for Staphylococcus aureus and Candida albicans with inhibition zones of 9mm and 7 mm, respectively, at the same concentration. Preliminary phytochemical screening identified the presence of bioactive agents such as saponins and flavonoids, while tannins and terpenoids were absent. Despite the observed zones of inhibition, the plant extract fell short of meeting the clinical and laboratory standards institute breakpoints for susceptibility and intermediate levels. Instead, they exhibited resistance breakpoints, rendering the plant extracts ineffective for antimicrobial activities. Nevertheless, this outcome does not negate the potential of the plant extract. Factors like mode of action and microorganism susceptibility could influence their effectiveness. Further evaluation is warranted to fully comprehend the potential of Embelia keniensis extracts. This study provides insight into their antimicrobial activity and a preliminary phytochemical profile.
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