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Determination of silver nanoparticle release from antibacterial fabrics into artificial sweat

机译:测定抗菌织物释放到人造汗液中的银纳米颗粒

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Silver nanoparticles have been used in numerous commercial products, including textiles, to prevent bacterial growth. Meanwhile, there is increasing concern that exposure to these nanoparticles may cause potential adverse effects on humans as well as the environment. This study determined the quantity of silver released from commercially claimed nanosilver and laboratory-prepared silver coated fabrics into various formulations of artificial sweat, each made according to AATCC , ISO and EN standards. For each fabric sample, the initial amount of silver and the antibacterial properties against the model Gram-positive ( S. aureus ) and Gram-negative ( E. coli ) bacteria on each fabric was investigated. The results showed that silver was not detected in some commercial fabrics. Furthermore, antibacterial properties of the fabrics varied, ranging from 0% to greater than 99%. After incubation of the fabrics in artificial sweat, silver was released from the different fabrics to varying extents, ranging from 0 mg/kg to about 322 mg/kg of fabric weight. The quantity of silver released from the different fabrics was likely to be dependent on the amount of silver coating, the fabric quality and the artificial sweat formulations including its pH. This study is the unprecedented report on the release of silver nanoparticles from antibacterial fabrics into artificial sweat. This information might be useful to evaluate the potential human risk associated with the use of textiles containing silver nanoparticles.
机译:银纳米颗粒已经用于许多商业产品中,包括纺织品,以防止细菌生长。同时,越来越多的担忧是,暴露于这些纳米颗粒可能对人类以及环境造成潜在的不利影响。这项研究确定了从市售的纳米银和实验室制备的涂银织物释放到各种人工汗液配方中的银量,每种配方均根据AATCC,ISO和EN标准制成。对于每种织物样品,研究了每种织物上银的初始含量以及对模型革兰氏阳性(金黄色葡萄球菌)和革兰氏阴性(大肠杆菌)细菌的抗菌性能。结果表明,在某些商用织物中未检测到银。此外,织物的抗菌性能在0%至大于99%的范围内变化。将织物在人造汗液中温育后,银从不同织物中释放的程度各不相同,从0 mg / kg到约322 mg / kg织物重量不等。从不同织物中释放出的银量可能取决于银涂层的量,织物质量和人造汗液配方(包括其pH值)。这项研究是史无前例的关于抗菌纳米银释放到人造汗液中的报道。该信息可能有助于评估与使用含银纳米颗粒的纺织品有关的潜在人为风险。

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