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Enzymatic Functionalization of Cork Surface with Antimicrobial Hybrid Biopolymer/Silver Nanoparticles

机译:抗菌杂化生物聚合物/银纳米粒子对软木表面的酶促功能化

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Laccase-assisted assembling of hybrid biopolymer-silver nanoparticles and cork matrices into an antimicrobial material with potential for water remediation is herein described. Amino-functional biopolymers were first used as doping agents to stabilize concentrated colloidal dispersions of silver nanoparticles (AgNP), additionally providing the particles with functionalities for covalent immobilization onto cork to impart a durable antibacterial effect. The solvent-free AgNP synthesis by chemical reduction was carried out in the presence of chitosan (CS) or 6-deoxy-6-(omega-aminoethyl) aminocellulose (AC), leading to simultaneous AgNP biofunctionalization. This approach resulted in concentrated hybrid NP dispersion stable to aggregation and with hydrodynamic radius of particles of about 250 nm. Moreover, laccase enabled coupling between the phenolic groups in cork and amino moieties in the biopolymer-doped AgNP for permanent modification of the material. The antibacterial efficiency of the functionalized cork matrices, aimed as adsorbents for wastewater treatment, was evaluated against Escherichia coli and Staphylococcus aureus during 5 days in conditions mimicking those in constructed wetlands. Both intrinsically antimicrobial CS and AC contributed to the bactericidal effect of the enzymatically grafted on cork AgNP. In contrast, unmodified AgNP were easily washed off from the material, confirming that the biopolymers potentiated a durable antibacterial functionalization of the cork matrices.
机译:本文描述了漆酶辅助将杂化生物聚合物-银纳米颗粒和软木基质组装到具有水修复潜力的抗菌材料中。首先使用氨基官能的生物聚合物作为掺杂剂来稳定银纳米颗粒(AgNP)的浓缩胶体分散体,另外还为颗粒提供了将共价固定在软木塞上的功能,以赋予持久的抗菌作用。通过化学还原合成无溶剂的AgNP是在壳聚糖(CS)或6-脱氧-6-(ω-氨基乙基)氨基纤维素(AC)的存在下进行的,从而实现了AgNP的同时生物功能化。这种方法导致浓缩的混合NP分散体稳定地聚集并且具有约250nm的颗粒的流体动力学半径。此外,漆酶能够使软木中的酚基与生物聚合物掺杂的AgNP中的氨基部分偶联,从而实现材料的永久改性。在模拟人造湿地的条件下,在5天之内评估了功能化软木基质(用作废水处理的吸附剂)的抗菌效果,对大肠杆菌和金黄色葡萄球菌进行了评估。固有的抗菌性CS和AC都有助于酶促嫁接在软木AgNP上的杀菌作用。相比之下,未修饰的AgNP容易从材料上洗掉,证实了生物聚合物增强了软木基质的持久抗菌功能。

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