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首页> 外文期刊>Frontiers in Microbiology >Production of Lipopeptide Biosurfactant by a Marine Nesterenkonia sp. and Its Application in Food Industry
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Production of Lipopeptide Biosurfactant by a Marine Nesterenkonia sp. and Its Application in Food Industry

机译:用海洋生产脂肽生物活性剂的生产<斜体> Nesternkonia SP。及其在食品工业中的应用

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Biosurfactants are smart biomolecules which have wide spread application in medicines, processed foods, cosmetics as well as in bioremediation. In food industry, biosurfactants are used as emulsion stabilizing agents, antiadhesives, and antimicrobial/antibiofilm agents. Nowadays biosurfactant demands in industries has increased tremendously and therefore new bacterial strains are being explored for large scale production of biosurfactants. In this study, an actinobacterial strain MSA31 was isolated from a marine sponge Fasciospongia cavernosa which showed high activity in biosurfactant screening assays such as drop collapsing, oil displacement, lipase and emulsification. Lipopeptide produced by MSA31 was found to be thermostable which was evident in differential scanning calorimetry analysis. The spectral data obtained in the Fourier transform infrared spectroscopy showed the presence of aliphatic groups combined with peptide moiety which is a characteristic feature of lipopeptides. The stability index of lipopeptide MSA31 revealed “halo-alkali and thermal tolerant biosurfactant” which can be used in the food industry. Microtiter plate assay showed 125 μg/ml of lipopeptide was effective in reducing the biofilm formation activity of pathogenic multidrug resistant Staphylococcus aureus . The confocal laser scanning microscopic images provided further evidences that lipopeptide MSA31 was an effective antibiofilm agent. The antioxidant activity of lipopeptide MSA31 may be due to the presence of unsaturated fatty acid present in the molecule. The brine shrimp cytotoxicity assay showed lipopeptide MSA31 was non-toxic and can be used as food additives. Incorporation of lipopeptide MSA31 in muffin showed improved organoleptic qualities compared to positive and negative control. This study provides a valuable input for this lipopeptide to be used in food industry as an effective emulsifier, with good antioxidant activity and as a protective agent against S. aureus .
机译:生物表面活性剂是智能生物分子,其在药物,加工食品,化妆品以及生物修复中具有广泛的应用。在食品工业中,生物表面活性剂用作乳液稳定剂,抗吸附剂和抗微生物/抗菌剂剂。如今,行业的生物活性剂需求巨大增加,因此正在探索新的细菌菌株,用于大规模生产生物件活性剂。在该研究中,从海绵型FascioSpongia cavernosa中分离出抗肌细胞菌株MSA31,该脉冲血管鞘腹在生物活性剂筛选测定中显示出高活性,例如滴落塌陷,油位移,脂肪酶和乳化。发现MSA31产生的脂肽是热稳定的,其在差示扫描量热法分析中是明显的。在傅立叶变换红外光谱中获得的光谱数据显示出脂族基团与肽部分组合,这是脂肽的特征。脂肽MSA31的稳定性指标揭示了可用于食品工业中的“卤代碱和耐热性生物活性剂”。显微滴定板测定显示125μg/ ml脂肽,可有效降低致病多药耐金黄色葡萄球菌的生物膜形成活性。共聚焦激光扫描显微镜图像进一步证明脂肽MSA31是有效抗抗体剂。脂肽MSA31的抗氧化活性可以是由于分子中存在的不饱和脂肪酸的存在。盐水虾细胞毒性测定显示脂肽MSA31无毒,可用作食品添加剂。与阳性和阴性对照相比,松饼中脂肽MSA31的掺入显示出改善的感官素质。该研究为这种脂肽作为一种有效的乳化剂,提供了脂肪肽的有价值的输入,其具有良好的抗氧化活性,并且作为针对金黄色葡萄球菌的保护剂。

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