首页> 外文期刊>Medical principles and practice: international journal of the Kuwait University, Health Science Centre >Antibacterial Activity, Cytotoxicity, and the Mechanism of Action of Bacteriocin from Bacillus subtilis GAS101
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Antibacterial Activity, Cytotoxicity, and the Mechanism of Action of Bacteriocin from Bacillus subtilis GAS101

机译:来自枯草芽孢杆菌气体101的抗菌活性,细胞毒性和菌菌的作用机制

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Objective: The aim of this study was to purify and characterize bacteriocin from the soil isolate Bacillus subtilis GAS101, and to determine its antimicrobial as well as antibiofilm potential. The purified bacteriocin was further analyzed and evaluated for mammalian cell cytotoxicity and the possible mode of action. Material and Methods: Bacteriocin from B. subtilis GAS101 (an animal husbandry soil isolate) was partially purified and checked for antimicrobial and antibiofilm activity against gram-positive and gram-negative bacteria . The molecular weight of bacteriocin was determined using tricine SDS-PAGE gel. The stability of bacteriocin was investigated at various temperatures and pH levels, and its sensitivity towards 8 enzymes and 6 chemicals was determined. Cytotoxicity analysis was performed on a Vero cell line by a tetrazolium dye-based assay. Scanning electron microscopy (SEM) of bacteriocin-treated bacteria was carried out to determine the possible mode of action. Results: Bacteriocin from B. subtilis GAS101 was a potential inhibitor of both the indicator organisms ( Staphylococcus epidermidis and Escherichia coli ), and had a molecular weight of approximately 6.5 kDa. An in situ gel assay showed a zone of inhibition corresponding to the estimated protein band size. Bacteriocin was stable and showed antibacterial activity in broad ranges of temperature (30–121°C) and pH (2–12). It was sensitive to 4 proteolytic enzymes, which indicated its proteinaceous nature. Bacteriocin showed > 70% cell viability on the mammalian Vero cell line. SEM depicted that the bacteriocin was able to disrupt the bacterial cell membrane as its probable mode of action. Conclusion: Thermostable and pH-tolerant bacteriocin from B. subtilis GAS101, of about 6.5 kDa, showed broad-spectrum antimicrobial and antibiofilm activity.
机译:目的:本研究的目的是从土壤中枯草芽孢杆菌气体101中净化和表征菌株,并确定其抗微生物以及抗菌剂潜力。进一步分析纯化的菌丝,并评估哺乳动物细胞毒性和可能的​​作用方式。材料和方法:来自B.来自B.枯草芽孢杆菌Gas101(畜牧土分离物)的菌株,并检查针对革兰氏阳性和革兰氏阴性细菌的抗微生物和抗菌剂活性。使用三仙SDS-PAGE凝胶测定菌丝的分子量。在各种温度和pH水平上研究了菌丝的稳定性,测定了朝向8个酶和6种化学物质的敏感性。通过四唑胺基染料的测定对vero细胞系进行细胞毒性分析。进行扫描电子显微镜(SEM)的菌霉素处理的细菌以确定可能的作用方式。结果:来自B.枯草芽孢杆菌Gas101的细菌霉素是指示器生物(葡萄球菌癫痫和大肠杆菌)的潜在抑制剂,并且具有约6.5kDa的分子量。 in原位凝胶测定显示对应于估计的蛋白质带尺寸的抑制区。细菌素是稳定的,并且在宽范围的温度(30-121℃)和pH(2-12)中显示出抗菌活性。它对4个蛋白水解酶敏感,表明其蛋白质性质。乳霉素在哺乳动物Vero细胞系上显示出> 70%的细胞活力。 SEM描绘了细菌霉素能够破坏细菌细胞膜作为其可能的作用方式。结论:来自B.枯草芽孢杆菌气体101的热稳定和耐磷酸杆菌,约为6.5kDa,显示出广谱抗微生物和抗菌活性。

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