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In vitro Antioxidant and Antimicrobial Effects of Ceratostigma plumbaginoides

机译:西洋参的体外抗氧化和抗菌作用

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Bioactive compounds, including phenols, flavonoids, and tannins, were quantified in leaves, stems and roots of methanol, n-butanol, diethyl ether and n-hexane extracts of Ceratostigma plztmbaginoides Bunge. (Plumbaginaceae) ornamental plants. The antioxidant capacity was measured by the DPPH and linoleic acid assays. The total bioactive compounds, as well as the antioxidant capacities, were the highest in the leaves compared with stems and roots. The methanolic, n-butanol, diethyl ether and n-hexane leaf extracts varied in their antibacterial and antifungal activities. In general, the most sensitive bacterium to leaf extracts was Bacillus cereus and the most resistant was Staphyllococcus aureus, while the most sensitive fungus was Aspergillus flavus and the most resistant one was Penicillium ochrochloron. As the methanolic leaf extract was the most active, it was subjected to column chromatography and two compounds were isolated and identified as 1 (5-hydroxy-2-methyl-1,4-naphthoquinone / plumbagin) and 2 (3,3'-biplumbagin). Compounds 1 and 2 showed the highest antibacterial and antifungal activities compared with other extracts tested. The MIC and MBC values for the most active compound 1 were in the range of 0.001 - 0.09 and 0.004 - 0.21 mg mL(-1), while MIC and MFC were determined as 0.001 - 0.11 and 0.002 - 0.19 mg mL(-1), respectively. The isolated compounds and leaf extracts showed also equal or higher antimicrobial activities compared with antibiotics/commercial reagents which indicate that the plant might be useful for drug development. This is the first report on the antibacterial and antifungal activities, as well as the antioxidant properties of the tested plant parts and isolated compounds.
机译:生物活性化合物(包括酚,类黄酮和单宁酸)在甲醇,正丁醇,乙醚和正己烷提取物Ceratostigma plztmbaginoides Bunge的叶,茎和根中进行定量。 (李子科)观赏植物。通过DPPH和亚油酸测定法测定抗氧化能力。与茎和根相比,叶片中的总生物活性化合物以及抗氧化能力最高。甲醇,正丁醇,乙醚和正己烷叶提取物的抗菌和抗真菌活性各不相同。通常,对叶提取物最敏感的细菌是蜡状芽孢杆菌,最有抵抗力的是金黄色葡萄球菌,而最敏感的真菌是黄曲霉,而最有抵抗力的细菌是ic青霉。由于甲醇叶提取物的活性最高,因此将其进行柱色谱分析,并分离出两种化合物,并将其鉴定为1(5-羟基-2-甲基-1,4-萘醌/李白蛋白)和2(3,3'- biplumbagin)。与测试的其他提取物相比,化合物1和2表现出最高的抗菌和抗真菌活性。活性最高的化合物1的MIC和MBC值在0.001-0.09和0.004-0.21 mg mL(-1)的范围内,而MIC和MFC被确定为0.001-0.11和0.002-0.19 mg mL(-1) , 分别。与抗生素/商业试剂相比,分离出的化合物和叶提取物还显示出相同或更高的抗微生物活性,这表明该植物可能对药物开发有用。这是有关被测植物部位和分离出的化合物的抗菌和抗真菌活性以及抗氧化性能的第一份报告。

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