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pH-Mediated Antibacterial Dyeing of Cotton with Prodigiosins Nanomicelles Produced by Microbial Fermentation

机译:通过微生物发酵产生的Prodigiosins纳米钙介导的pH介导的抗菌染色

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This study developed a novel pH-mediated antimicrobial dyeing process of cotton with prodigiosins nanomicelles produced by microbial fermentation. The average diameter of the pigment nanomicelles was 223.8 nm (range of 92.4–510.2 nm), and the pigment concentration was 76.46 mg/L. It was found that the superior dyeing effect of cotton fabric was achieved by adjusting the dye bath pH. When the pH was three, dyed cotton under 90 °C for 60 min exhibited the greatest color strength with good rubbing, washing and perspiration color fastness. By the breaking strength test and XRD analysis, it was concluded that the cotton dyed under the optimum condition almost suffered no damage. In addition, due to the presence of prodigiosins, dyed cotton fabric under the optimal process showed outstanding bacteriostatic rates of 99.2% and 85.5% against Staphylococcus aureus and Escherichia coli , respectively. This research provided an eco-friendly and widely-applicable approach for antimicrobial intracellular pigments with the property of pH-sensitive solubility in water to endow cellulose fabric with color and antibacterial activity.
机译:该研究开发了一种新型pH介导的棉花型棉花型棉花,通过微生物发酵产生的Prodigiosins纳米钙。颜料纳米钙的平均直径为223.8nm(范围为92.4-510.2nm),颜料浓度为76.46mg / L.发现通过调节染料浴pH来实现棉织物的卓越染色作用。当pH为三个时,90℃下的染色棉60分钟显示出最大的色彩强度,具有良好的摩擦,洗涤和排汗色牢度。通过断裂强度测试和XRD分析,得出结论是,在最佳条件下染色棉花几乎遭受了损害。此外,由于产品的存在,在最佳过程下染色棉织物分别显示出优异的抑制抑菌率为99.2%和85.5%,分别对葡萄球菌和大肠杆菌的葡萄球菌和大肠杆菌。本研究为抗微生物细胞内颜料提供了一种环保和广泛适用的方法,具有在水中pH敏感性溶解度的性质,以赋予纤维素织物和抗菌活性。

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