Nguyen Quang Huy, Nguyen Hai Van, Vu Thi Hanh-Nguyen, Chu-Ky Son, Vu Thu Trang, Hoang Ha, Quach Ngoc Tung, Bui Thi Lien, Chu Hoang Ha, Khieu Thi Nhan, Sarter Samira, Li Wen-Jun, Phi Quyet-Tien
Graduate University of Science and Technology (GUST), Vietnam Academy of Science and Technology (VAST), 18 Hoang Quoc Viet, Cau Giay, Hanoi 10000, Vietnam.
University of Science and Technology of Hanoi (USTH), Vietnam Academy of Science and Technology (VAST), 18 Hoang Quoc Viet, Cau Giay, Hanoi 10000, Vietnam.
Antibiotics (Basel). 2019 Oct 28;8(4):197. doi: 10.3390/antibiotics8040197.
The present study aimed to evaluate the synergistic effects of the crude ethyl acetate extract (CEAE) from endophytic actinomycete MPT42 and essential oil (EO) of the same host plant Litsea cubeba. The isolate MPT42, exhibiting broad-spectrum antimicrobial activities and harboring all three antibiotic-related biosynthetic genes III, and , was identified as based on an analysis of the morphology, physiology, and 16S rDNA sequence. Minimum inhibitory concentrations (MICs) and the fractional inhibitory concentration index were used to estimate the synergistic effects of various combined ratios between CEAE or antibiotics (erythromycin, vancomycin) and EO toward 13 microbial strains including pathogens. L. cubeba fruit EO, showing the main chemical constituents of 36.0% citral, 29.6% carveol, and 20.5% limonene, revealed an active-low against tested microbes (MICs ≥ 600 μg/mL). The CEAE of culture exhibited moderate-strong antimicrobial activities against microbes (MICs = 80-600 μg/mL). Analysis of the mechanism of action of EO on ATCC 25922 found that bacterial cells were dead after 7 h of the EO treatment at 1 MIC (5.5 mg/mL), where 62% cells were permeabilized after 2 h and 3% of them were filament (length ≥ 6 μm). Combinations of CEAE, erythromycin, or vancomycin with EO led to significant synergistic antimicrobial effects against microbes with 4-16 fold reduction in MIC values when compared to their single use. Interestingly, the vancomycin-EO combinations exhibited a strong synergistic effect against five Gram-negative bacterial species. This could assume that the synergy was possibly due to increasing the cell membrane permeability by the EO acting on the bacterial cells, which allows the uptake and diffusion of antimicrobial substances inside the cell easily. These findings in the present study therefore propose a possible alternative to combat the emergence of multidrug-resistant microbes in veterinary and clinics.
本研究旨在评估内生放线菌MPT42的粗乙酸乙酯提取物(CEAE)和同一宿主植物山苍子的精油(EO)的协同作用。分离株MPT42表现出广谱抗菌活性,且含有所有三个与抗生素相关的生物合成基因III、 和 ,基于形态学、生理学和16S rDNA序列分析被鉴定为 。采用最低抑菌浓度(MIC)和分数抑菌浓度指数来评估CEAE或抗生素(红霉素、万古霉素)与EO之间不同组合比例对包括病原体在内的13种微生物菌株的协同作用。山苍子果实EO的主要化学成分包括36.0%的柠檬醛、29.6%的香芹醇和20.5%的柠檬烯,对受试微生物显示出低活性(MIC≥600μg/mL)。 培养物的CEAE对微生物表现出中度至强的抗菌活性(MIC = 80 - 600μg/mL)。对EO作用于金黄色葡萄球菌ATCC 25922的作用机制分析发现,在1 MIC(5.5mg/mL)的EO处理7小时后细菌细胞死亡,其中2小时后62%的细胞发生通透性改变,3%的细胞形成丝状体(长度≥6μm)。CEAE、红霉素或万古霉素与EO的组合对微生物产生了显著的协同抗菌作用,与单独使用相比,MIC值降低了4 - 16倍。有趣的是,万古霉素 - EO组合对五种革兰氏阴性菌表现出强烈的协同作用。这可能是因为EO作用于细菌细胞增加了细胞膜通透性,从而使抗菌物质更容易进入细胞内并扩散。因此,本研究中的这些发现提出了一种可能的替代方法来对抗兽医和临床中多重耐药微生物的出现。