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纳米银的抗菌功效以及强嗜盐性(海洋)细菌蜡样芽孢杆菌 A30 的乙酸乙酯代谢产物对多重耐药菌的影响。

Antibacterial efficacy of silver nanoparticles and ethyl acetate's metabolites of the potent halophilic (marine) bacterium, Bacillus cereus A30 on multidrug resistant bacteria.

机构信息

a Department of Biotechnology, School of Biosciences , Periyar University , Salem , India.

出版信息

Pathog Glob Health. 2017 Oct;111(7):367-382. doi: 10.1080/20477724.2017.1390829. Epub 2017 Oct 26.

Abstract

Bacteria are generally responsible for the prevalence of several diseases and pathogenic bacteria are showing increasing resistance to different antibacterials. During the present study an extremophilic bacterium-A30 isolated from the marine waters was characterized and evaluated against four multi-drug resistant (MDR) pathogens, viz; Methicillin-resistant Staphylococcus aureus (MRSA), Escherichia coli, Klebsiella pneumoniae, and Pseudomonas aeruginosa. The sensitivity pattern of the selected pathogens was tested with 31 antibiotics. Among the 47 marine microbial extracts tested on 4-MDR pathogens viz: Methicillin-resistant Staphylococcus aureus (MRSA), E. coli, K. pneumoniae and P. aeruginosa, only our strain A30 strain exhibited highest efficacy. This strain was subsequently subjected to 16S rDNA sequencing which confirmed its allocation as Bacillus cereus. Silver nanoparticle (AgNPs) synthesis and ethyl acetate extraction were performed using the supernatant of B. cereus. The synthesized AgNPs were characterized by UV-Visible, Fourier-transform infra-red (FT-IR), X-ray diffraction (XRD), Field emission-scanning electron microscopy (FE-SEM), energy dispersive X-ray spectroscopy (EDX), and Zeta potential analyses. The presence of functional groups and 13 bioactive components in the ethyl acetate extract were analyzed using FT-IR and gas chromatography-mass spectrometry (GC-MS). The synthesized of AgNPs and the ethyl acetate extract showed preponderant activity against P. aeruginosa and MRSA, respectively. The effects of AgNPs were significant when compared to ethyl acetate extract. Therefore, the halophilic bacterium, B. cereus mediated AgNPs could provide antibacterial applications in the biomedical industries.

摘要

细菌通常是多种疾病流行的罪魁祸首,而致病性细菌对不同抗菌药物的耐药性也在不断增加。在本研究中,从海洋水中分离出一种嗜极菌 A30,对四种多药耐药(MDR)病原体(耐甲氧西林金黄色葡萄球菌(MRSA)、大肠杆菌、肺炎克雷伯菌和铜绿假单胞菌)进行了特征描述和评估。用 31 种抗生素测试了所选病原体的药敏模式。在对 4-MDR 病原体(耐甲氧西林金黄色葡萄球菌(MRSA)、大肠杆菌、肺炎克雷伯菌和铜绿假单胞菌)进行测试的 47 种海洋微生物提取物中,只有我们的 A30 菌株表现出最高的疗效。随后对该菌株进行 16S rDNA 测序,证实其归为蜡样芽胞杆菌。使用蜡样芽胞杆菌的上清液进行银纳米粒子(AgNPs)合成和乙酸乙酯提取。用紫外可见分光光度计、傅里叶变换红外(FT-IR)、X 射线衍射(XRD)、场发射扫描电子显微镜(FE-SEM)、能谱(EDX)和 Zeta 电位分析对合成的 AgNPs 进行了表征。用 FT-IR 和气相色谱-质谱联用(GC-MS)分析了乙酸乙酯提取物中 13 种生物活性成分和功能基团的存在。合成的 AgNPs 和乙酸乙酯提取物对铜绿假单胞菌和耐甲氧西林金黄色葡萄球菌表现出卓越的活性,分别。与乙酸乙酯提取物相比,AgNPs 的效果更为显著。因此,嗜盐菌蜡样芽胞杆菌介导的 AgNPs 可为生物医学工业提供抗菌应用。

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