Xu Mingqi, Luo Huayong, Rong Hongwei, Wu Shuhan, Zheng Zexin, Chen Boyuan
School of Civil Engineering, Guangzhou University, Guangzhou 510006, China.
School of Civil Engineering, Guangzhou University, Guangzhou 510006, China.
Int J Biol Macromol. 2023 Mar 15;231:123289. doi: 10.1016/j.ijbiomac.2023.123289. Epub 2023 Jan 16.
This paper reports the preparation of calcium alginate gels-functionalized PUF decorated with AgNPs (CA/PUF@Ag) by in situ reduction of Ag ions to form AgNPs with weakly reducing glycerol in CA/PUF composite. The water-adsorbing capacity, chemical structure, crystalline nature, elemental composition and morphologies of the composite were characterized. The Ag release behavior of CA/PUF@Ag was investigated. The inhibition zone test, time-dependent co-culture assay, test tube test, and antibacterial filtration experiment with Escherichia coli as an indicator of bacterial contamination were conducted to explore the antimicrobial efficacy. Results indicated that the CA/PUF@Ag prepared at 0.25 % w/v of SA could absorb more water with a higher swelling ratio of 8.0 g/g than that of PUF@Ag (6.0 g/g), which was subsequently squeezed by minimal pressure stimuli. The CA/PUF@Ag had a larger initial AgNPs loading amount (8.48 mg/g), lower Ag release concentration (44.35 μg/L) and lower Ag release rate (0.27 %) after 14 days tests than those of PUF@Ag (7.93 mg/g, 80.87 μg/L and 0.60 % respectively). The CA/PUF@Ag was highly reusable because bacterial cells in the squeezed water recovered from the composite were completely inactivated over five cycles of operation, and exhibited good antibacterial efficacy as an antibacterial filter in a flow test.
本文报道了通过在海藻酸钠/聚氨酯泡沫(CA/PUF)复合材料中利用甘油原位还原银离子形成银纳米颗粒(AgNPs),制备出功能化的AgNPs修饰的海藻酸钙凝胶/聚氨酯泡沫(CA/PUF@Ag)。对该复合材料的吸水能力、化学结构、晶体性质、元素组成和形态进行了表征。研究了CA/PUF@Ag的银释放行为。以大肠杆菌作为细菌污染指标,进行了抑菌圈试验、时间依赖性共培养试验、试管试验和抗菌过滤实验,以探究其抗菌效果。结果表明,在海藻酸钠质量体积比为0.25%的条件下制备的CA/PUF@Ag能吸收更多水分,其溶胀率为8.0 g/g,高于PUF@Ag(6.0 g/g),随后在最小压力刺激下可被挤出。经过14天测试,CA/PUF@Ag的初始AgNPs负载量更大(8.48 mg/g),银释放浓度更低(44.35 μg/L),银释放速率更低(0.27%),相比之下PUF@Ag分别为7.93 mg/g、80.87 μg/L和0.60%。CA/PUF@Ag具有高度可重复使用性,因为从复合材料中挤出的水中的细菌细胞在五个操作循环后完全失活,并且在流动试验中作为抗菌过滤器表现出良好的抗菌效果。