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Synergistic activity and mechanism of action of Stephania suberosa Forman extract and ampicillin combination against ampicillin-resistant Staphylococcus aureus

机译:千金藤提取物与氨苄西林联合用药对氨苄西林耐药金黄色葡萄球菌的协同活性及作用机理

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BackgroundAmpicillin-resistant S. aureus (ARSA) now poses a serious problem for hospitalized patients, and their care providers. Plant-derived antibacterial that can reverse the resistance to well-tried agents which have lost their original effectiveness are the research objectives of far reaching importance. To this aim, the present study investigated antibacterial and synergistic activities of Stephania suberosa extracts (SSE) against ARSA when used singly and in combination with ampicillin.ResultsThe majority chemical compounds of SSE were alkaloid (526.27?±?47.27?mg/1?g of dried extract). The Minimum inhibitory concentration (MICs) for ampicillin and SSE against all ARSA strains were >512?μg/ml and 4?mg/ml, respectively. Checkerboard assay revealed synergistic activity in the combination of ampicillin (0.15?μg/ml) and SSE (2?mg/ml) at fractional inhibitory concentration index (FICI) <0.5. The killing curve assay had confirmed that the viability of ARSA was dramatically reduced from 5x105 cfu/ml to 103?cfu/ml within 6?h after exposure to SSE (2?mg/ml) plus ampicillin (0.15?μg/ml) combination. Electron microscopic study clearly revealed that these ARSA cells treated with this combination caused marked morphological damage, peptidoglycan and cytoplasmic membrane damage, and average cell areas significant smaller than control. Obviously, Immunofluorescence staining and confocal microscopic images confirmed that the peptidoglycan of these cells were undoubtedly disrupted by this combination. Furthermore, the CM permeability of ARSA was also increased by this combination. Enzyme assay demonstrated that SSE had an inhibitory activity against β-lactamase in concentrations manner.ConclusionsSo, these findings provide evidence that SSE has the high potential to reverse bacterial resistance to originate traditional drug susceptibility of it and may relate to three modes of actions of SSE: (1) inhibits peptidoglycan synthesis, resulting in morphological damage, (2) inhibits β-lactamases activity, and (3) increases CM permeability. It is widely recognized that many types of drugs are derived from alkaloids. So, this SSE offers the prominent potential to develop a novel adjunct phytopharmaceutical to ampicillin for the treatment of ARSA. Further active ingredients study, toxicity of it, and the synergistic effect on blood and tissue should be performed and confirmed in an animal test or in humans.
机译:背景耐氨苄西林的金黄色葡萄球菌(ARSA)现在对住院患者及其护理人员构成了严重的问题。可以逆转对已经失去其最初效力的良好试验药物的抗性的植物来源的抗菌剂是极为重要的研究目标。为此,本研究研究了Stephania suberosa提取物(SSE)单独或与氨苄青霉素联用时对ARSA的抗菌和协同活性。结果SSE的主要化学成分为生物碱(526.27?±?47.27?mg / 1?g干提取物)。氨苄青霉素和SSE对所有ARSA菌株的最低抑菌浓度(MICs)分别大于512?μg/ ml和4?mg / ml。棋盘检测显示在抑制浓度指数(FICI)<0.5的情况下,氨苄西林(0.15?μg/ ml)和SSE(2?mg / ml)的组合具有协同活性。杀伤曲线试验已证实,在暴露于SSE(2?mg / ml)加氨苄青霉素(0.15?μg/ ml)组合后的6?h内,ARSA的活力从5x105 cfu / ml显着降低至103?cfu / ml。 。电子显微镜研究清楚地表明,用这种组合处理的这些ARSA细胞引起明显的形态学损伤,肽聚糖和细胞质膜损伤,并且平均细胞面积明显小于对照。显然,免疫荧光染色和共聚焦显微图像证实了这些细胞的肽聚糖无疑被这种组合破坏了。此外,这种组合还提高了ARSA的CM渗透性。酶法检测结果表明SSE对β-内酰胺酶具有一定的抑制作用。结论因此,这些发现提供了SSE具有很高的逆转细菌耐药性的潜力,可引起其对传统药物的敏感性,并可能与SSE的三种作用方式有关。 :(1)抑制肽聚糖的合成,导致形态受损;(2)抑制β-内酰胺酶活性;(3)增加CM渗透性。众所周知,许多类型的药物都来自生物碱。因此,该SSE为开发新型的氨苄西林辅助植物药提供了巨大的潜力,可用于治疗ARSA。应在动物试验或人体中进行进一步的活性​​成分研究,其毒性以及对血液和组织的协同作用,并进行确认。

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