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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >A green and facile approach to durable antimicrobial coating of cotton with silver nanoparticles, whey protein, and natural tannin
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A green and facile approach to durable antimicrobial coating of cotton with silver nanoparticles, whey protein, and natural tannin

机译:用银纳米粒子,乳清蛋白和天然单宁纯棉耐用抗菌涂层的绿色和舒适性方法

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Antimicrobial cotton textiles were fabricated via green synthesis of silver nanoparticles (AgNPs) from silver nitrate, using whey protein isolate (WPI) as both reducing agent and stabilizer. Natural tannin-rich extract from Xylocarpus granatum bark (XGBE) was used to form insoluble complexes with the WPI through hydrogen bonding and hydrophobic forces. Cotton fabrics were coated using one-step padding of the AgNP/WPI/XGBE mixture, followed by air drying. Both WPI and XGBE served as an excellent natural binder for AgNPs with cotton. Transmission electron microcopy showed the AgNPs to be almost spherical, with a mean diameter of 31 nm. Antimicrobial treatment did not significantly alter the original color of the fabrics at low AgNPs loadings. The coated fabrics showed strong and durable antibacterial activity against Staphylococcus aureus and Escherichia coli, with 99.99% bacterial reduction. Treatment with only 50 ppm of silver nitrate and WPI maintained more than 90% bacterial reduction after 50 washing cycles. In a test of antifungal properties, at least 203 mg silver per kilogram of fabric was required to suppress the growth of Aspergillus niger. In-vitro cytotoxicity testing demonstrated the antimicrobial treated fabrics to be non-toxic to L929 cells. Antimicrobial treatment did not have significant negative effects on the drapeability and tearing strength of the fabrics. This approach is very attractive in terms of the safety and biocompatibility of the raw materials, the simplicity of the synthesis and the coating process, and the antimicrobial effectiveness of the treated fabrics.
机译:使用乳清蛋白分离物(WPI)作为还原剂和稳定剂,通过绿色合成银纳米颗粒(AgNP)的绿色合成来制造抗微生物棉纺织品。富含木龙富含鞣制的富含宁甘油(XGBE)的富南萃取物用于通过氢键和疏水力与WPI形成不溶性复合物。使用AgNP / WPI / XGBE混合物的一步填充涂覆棉织物,然后用空气干燥。 WPI和XGBE都是具有棉花AgNP的优秀天然粘合剂。透射电子显微镜显示AgNP几乎是球形的,平均直径为31nm。抗微生物处理在低Agnps载荷下没有显着改变织物的原始颜色。涂层织物显示出对葡萄球菌和大肠杆菌的强烈耐用的抗菌活性,细菌还原99.99%。在50个洗涤循环后,只有50ppm的硝酸银和WPI的治疗保持超过90%的细菌还原。在抗真菌性能的测试中,需要每千克织物至少203mg银抑制Aspergillus尼日尔的生长。体外细胞毒性测试证明了抗微生物处理的织物对L929细胞无毒。抗微生物治疗对织物的可覆盖性和撕裂强度没有显着的负面影响。这种方法在原材料的安全性和生物相容性方面非常有吸引力,合成的简单性和涂层过程,以及经处理的织物的抗微生物效果。

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