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Antibacterial Activity of Defatted and Nondefatted Methanolic Extracts of Aframomum melegueta K. Schum. against Multidrug-Resistant Bacteria of Clinical Importance

机译:Autamomum melegueta K. schum的脱脂和非偏甲醇提取物的抗菌活性。针对临床重要性的多药抗性细菌

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The antibacterial activity of the extracts of Aframomum melegueta including n-hexane extract (NHE), nondefatted methanol extract (NDME), and defatted methanol extract (DME) was investigated in this study. The NHE exhibited no antibacterial activity. The DME showed higher antibacterial activity than the NDME against the different isolates. At the highest concentration of 10?mg/mL in agar diffusion, NDME produced inhibition zones ranging from 11 to 29?mm against the microorganisms while DME produced inhibition zones ranging from 20 to 40?mm with the concentration of 10?mg/mL against the microorganisms. 0.1?mg/mL of the DME produced inhibition zones ranging between 12 and 14?mm in Aeromonas hydrophila ATCC 35654 and Pseudomonas aeruginosa ATCC 15442, respectively, while none of the isolates were inhibited by the NDME at a concentration of 1?mg/mL or less. In the agar dilution assay, the MICs of the NDME and DME ranged between 0.31 and 10?mg/mL, but more isolates were inhibited at 0.31?mg/mL of DME than those in NDME. In macrobroth assay, the MICs of the NDME ranged between 0.15 and 5.0?mg/mL and the MBCs ranged between 0.63 and 5.0?mg/mL, and the MICs of the DME ranged between 0.08 and 5.0?mg/mL and the MBCs were between 0.31 and 5.0?mg/mL. This study indicated that DME was more active with higher antibacterial activity than the NDME of this plant, and extracting the fatty portion of plant materials prior susceptibility testing would allow plant extracts to be more effective as well as justifying the use of Aframomum melegueta in traditional medicine for the treatment of bacterial infections.
机译:在本研究中研究了包括正己烷提取物(NHE),非甲醇萃取物(NDME),非甲醇萃取物(NDME)和脱差甲醇提取物(DME)的抗菌活性。 NHE没有抗菌活性。 DME表现出比NDME对抗不同分离物的抗菌活性。在琼脂扩散中的最高浓度为10·mg / ml,NDME产生抑制区域,抑制区对微生物的抑制区为11至29Ωmm,而DME产生的抑制区为20-40Ωmm,浓度为10μmg/ ml微生物。 0.1?mg / ml的DME产生的抑制区分别在Aeromonas疏水层ATCC 35654和假单胞菌铜绿假单胞菌ATCC 15442之间的抑制区分别在12和14Ωmm之间,而NDME浓度为1·mg / ml的浓度抑制了分离物或更少。在琼脂稀释测定中,NDME和DME的掩星范围为0.31和10?Mg / ml,但在0.31μmg/ ml的DME中抑制了更多的分离物,而不是NdME中的分离物。在Macrobroth测定中,NDME的掩星范围为0.15和5.0?mg / ml,MBC在0.63和5.0·mg / ml之间,并且DME的掩星范围为0.08和5.0?mg / ml和MBCs在0.31和5.0?mg / ml之间。本研究表明,DME具有比该植物的NDME更高的抗菌活性,并且提取植物材料的脂肪部分之前的易感性测试将使植物提取物更有效,并且证明在传统医学中使用Aframomum melegueta用于治疗细菌感染。

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