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初步植物化学筛选和粗茎皮提取物及 Parkia biglobosa(Jacq.)馏分的抗菌性能。

Preliminary phytochemical screening and antibacterial properties of crude stem bark extracts and fractions of Parkia biglobosa (Jacq.).

机构信息

Department of Microbiology, Obafemi Awolowo University, Ile-Ife 234, Nigeria.

出版信息

Molecules. 2013 Jul 18;18(7):8485-99. doi: 10.3390/molecules18078485.

Abstract

A methanolic crude extract of Parkia biglobosa was prepared and later partitioned in succession with different solvents of increasing polarity ranging from n-hexane, chloroform and ethyl acetate to butanol. Phytochemical screening of the extract revealed the presence of alkaloids, tannins, saponins, flavonoids, steroids, glycoside and sugars. The inhibition zones exhibited by the extract against the tested bacteria ranged between 14 ± 0.00 mm (against Escherichia coli) and 28 ± 0.71 mm (against Pseudomonas aeruginosa). The MIC of the methanolic extract of P. biglobosa against isolates ranged between 0.63 mg/mL and 5 mg/mL, while the MIC values exhibited by the n-hexane and aqueous fractions ranged between 0.63 mg/mL and 10 mg/mL. Overall the extract and fractions of P. biglobosa used in this work were found to possess antimicrobial properties which compared favourably with those of streptomycin. These observations make this plant a potential source of bioactive compounds that can be used in management of bacterial infections. The use of this plant as herbal medicaments in African countries and the reports on the toxicity of the plant further show that the plant is non-toxic to humans.

摘要

一种来自大托叶云实(Parkia biglobosa)的甲醇粗提取物被制备出来,并随后用极性逐渐增加的不同溶剂依次进行萃取,范围从正己烷、氯仿和乙酸乙酯到正丁醇。提取物的植物化学筛选显示出存在生物碱、单宁、皂苷、类黄酮、类固醇、糖苷和糖。提取物对测试细菌的抑制带范围在 14 ± 0.00 mm(针对大肠杆菌)和 28 ± 0.71 mm(针对铜绿假单胞菌)之间。P. biglobosa 的甲醇提取物对分离株的 MIC 值范围在 0.63 mg/mL 至 5 mg/mL 之间,而正己烷和水相部分的 MIC 值范围在 0.63 mg/mL 至 10 mg/mL 之间。总体而言,本研究中使用的 P. biglobosa 提取物和馏分被发现具有抗菌特性,可与链霉素相媲美。这些观察结果使这种植物成为可用于管理细菌感染的生物活性化合物的潜在来源。这种植物在非洲国家被用作草药药物,以及关于该植物毒性的报告进一步表明,该植物对人类无毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a80e/6269791/d0b543404069/molecules-18-08485-g001.jpg

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