首页> 美国卫生研究院文献>other >Inhibition of New Delhi Metallo-β-Lactamase 1 (NDM-1) Producing Escherichia coli IR-6 by Selected Plant Extracts and Their Synergistic Actions with Antibiotics
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Inhibition of New Delhi Metallo-β-Lactamase 1 (NDM-1) Producing Escherichia coli IR-6 by Selected Plant Extracts and Their Synergistic Actions with Antibiotics

机译:精选植物提取物对新德里金属-β-内酰胺酶1(NDM-1)产生大肠杆菌IR-6的抑制及其与抗生素的协同作用

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摘要

Improper use of antibiotics has led to a great concern in the development of pathogenic microbial resistance. New Delhi metallo-β-lactamase 1 (NDM-1) producing bacteria are resistant to most of the β-lactam antibiotics, and so far, no new compounds have been clinically tested against these bacteria. In this study, ethanol extracts from the leaves of 240 medicinal plant species were screened for antibacterial activity against an NDM-1 Escherichia coli strain. The extracts that showed antibacterial activity were then tested for minimum inhibitory concentrations (MICs) and zones of inhibition. The extract from Combretum albidum G. Don, Hibiscus acetosella Welw. ex Hiern, Hibiscus cannabinus L., Hibiscus furcatus Willd., Punica granatum L., and Tamarindus indica L. showed bactericidal activity between 5 and 15 mg/ml and the MIC was between 2.56 and 5.12 mg/ml. All six plant extracts inhibited activity of the NDM-1 enzyme in vitro, and the IC50 value ranged between 0.50 and 1.2 ng/μl. Disruption of bacterial cell wall integrity by the plant extracts was clearly visible with scanning electron microscopy. Increases in membrane permeability caused 79.4–89.7% bacterial cell deaths as investigated by fluorescence-activated cell sorting. All the plant extracts showed synergistic effects when combined with colistin [fractional inhibitory concentration (ΣFIC) = 0.125–0.375], meropenem (ΣFIC = 0.09–0.313), and tetracycline (ΣFIC = 0.125–0.313). Thus, the plant extracts can be fractionated for the identification of active compounds, which could be used as new antibacterial compounds for the development of drugs against NDM-1 E. coli in addition to their use in combination therapy.
机译:抗生素使用不当已引起对病原性微生物耐药性发展的高度关注。产生新德里金属-β-内酰胺酶1(NDM-1)的细菌对大多数β-内酰胺类抗生素都有抗药性,到目前为止,还没有针对这些细菌的临床试验新化合物。在这项研究中,从240种药用植物的叶子中提取乙醇提取物,针对NDM-1大肠杆菌菌株进行了抗菌活性筛选。然后测试显示出抗菌活性的提取物的最低抑菌浓度(MIC)和抑菌圈。从Combretum albidum G. Don,Hibiscus acetosella Welw提取。来自Hiern,大麻木芙蓉,芙蓉木槿,Punica granatum L.和Tamarindus indica L.的杀菌活性为5至15 mg / ml,MIC为2.56至5.12 mg / ml。所有六种植物提取物在体外均抑制NDM-1酶的活性,IC50值介于0.50至1.2 ng /μl之间。用扫描电子显微镜清晰可见植物提取物对细菌细胞壁完整性的破坏。通过荧光激活的细胞分选研究,膜通透性的增加导致79.4–89.7%的细菌细胞死亡。当与粘菌素结合时,所有植物提取物均表现出协同作用[分数抑制浓度(ΣFIC)= 0.125–0.375],美洛培南(ΣFIC= 0.09–0.313)和四环素(ΣFIC= 0.125–0.313)。因此,可以将植物提取物分级分离以鉴定活性化合物,除了将其用于联合治疗外,还可以用作开发针对NDM-1大肠杆菌的药物的新型抗菌化合物。

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