香叶(Ocimum gratissimum L.)植物化学评价、抗菌活性及毒理学分析叶提取物

M. Umar, C. P. Nkemelu, M. Sagir, S. Mohammed, G. K. Ajiya, I. Mohammed, A. A. Yaya, A. A. Kigbu, S. Ojo, I. M. Abdulkarim, I. Tafinta, I. C. Amuta
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引用次数: 2

摘要

目的:研究香叶(Ocimum gratissimum L.)叶提取物的植物化学筛选、抑菌活性和体内毒性。方法:采用科学标准的索氏提取法、孔扩散琼脂抗菌试验和体内急性毒性试验。结果:按照标准筛选试验,采用常规方法进行植物化学分析,甲醇提取物中检出蒽醌类、皂苷类、单宁类、萜类和生物碱。甲醇提取物中未检出黄酮类化合物、糖苷类化合物、酞菁苷类化合物和甾体化合物。而氯仿提取物中仅检测到黄酮类化合物。其他所有植物化学物质都不存在。提取物对金黄色葡萄球菌、枯草芽孢杆菌、伤寒沙门氏菌和大肠杆菌均有较弱的抑菌活性。但是,提取物对白色念珠菌没有效果。在甲醇和氯仿提取物的最低浓度(12.5 mg/mL)下,金黄色葡萄球菌和蜡样芽孢杆菌的最低抑菌浓度被确定。而甲醇和氯仿提取物在MIC为50mg/mL时,对伤寒沙门氏菌和大肠杆菌有中等活性。甲醇和氯仿提取物对枯草芽孢杆菌和伤寒沙门氏菌的MBC均为50 mg/mL。氯仿香叶提取物浓度为100 mg/mL时,对伤寒沙门氏菌有抑制作用。甲醇和氯仿香叶提取物中未检测到白色念珠菌的mic。对白化病大鼠的体内毒性研究表明,高剂量时,该植物提取物表现出轻微的毒性,但总体上表明,在不同浓度下,该植物提取物是安全的。结论:该植物可用于治疗由试验微生物引起的各种疾病,且口服毒性较小。
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Evaluation of Phytochemical, Antimicrobial Activities and Toxicological Analysis of Scent Leaf (Ocimum gratissimum L.) Leaf Extracts
Aim: The phytochemical screening, antibacterial activities and in vivo toxicity of extracts of the leaves of scent leaf (Ocimum gratissimum L.) were investigated. Methods: All the analyses were carried out using standard scientific procedures using Soxhlet extraction, well-diffusion agar antimicrobial testing and in vivo acute toxicity testing. Results: The phytochemical analysis according to standard screening tests using conventional protocols revealed the presence of anthraquinone, saponins, tannins, terpenoids and alkaloids, which were detected in methanol extract analyzed. But, flavonoids, glycosides, phlobatannins and steroids were not detected in the methanol extracts analyzed. While only flavonoids were detected in chloroform extract. All other phytochemicals were absent. The extract fractions generally exhibited slight antibacterial activities on Staphylococcus aureus, Bacillus subtilis, Salmonella Typhi and Escherichia coli. But, the extracts showed no effect against Candida albicans. The minimum inhibitory concentration of O. gratissimum was determined with S. aureus and B. cereus recording MICs at the lowest concentration (12.5 mg/mL) of the methanol and chloroform extracts used. While methanol and chloroform extracts were found to have recorded moderate activity S. Typhi and E. coli at the MIC of 50mg/mL. The methanol and chloroform extract recorded MBC of 50 mg/mL on B. subtilis and S. Typhi. However, Salmonella Typhi was inhibited at the concentration of 100 mg/mL of chloroform scent leaf extract. The MICs of C. albicans were not determined in the methanol and chloroform scent leaf extracts analyzed. The in vivo toxicity of O. gratissimum extracts against albino rats revealed that the plant extracts were found to exhibit mild toxicity at higher doses, but the overall remark showed that the plant extract was safe at various concentrations. Conclusions: The plant can be used in the treatment of various diseases caused by the test microbes, and the plant has less toxicity when administered orally.
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