Research Institute for Energy Technologies and Advanced Materials (IITEMA), National University of Río Cuarto (UNRC)-National Council of Scientific and Technical Research (CONICET), Ruta Nacional N◦ 36, Km 601, Río Cuarto (Córdoba) 5800, Argentina.
Chemistry Department, FCEFQyN-National University of Río Cuarto, Río Cuarto (Córdoba) 5800, Argentina.
Nanotechnology. 2022 Nov 7;34(4). doi: 10.1088/1361-6528/ac98cf.
The present work reports the antibacterial activity againstof a nanocomposite made of zinc oxide nanoparticles dispersed in a poly(acrylamide-co-hydroxyethylmethacrylate) matrix (PAAm-Hema-ZnONPs). Thesynthesis of ZnONPs inside of the PAAm-Hema crosslinked network is described. Moreover, the physicochemical properties of the PAAm-Hema-ZnONPs nanocomposite are analyzed. The results confirm that the PAAm-Hema hydrogel provides an excellent scaffold to generate ZnONPs. The presence of ZnONPs inside the hydrogel was confirmed by UV-visible (band at 320 nm), by Infrared spectroscopy (peak at 470 cm), SEM, and TEM images. The presence of NPs in PAAm-Hema diminish the swelling percentage by 70%, and the Young modulus by 33.7%, compared with pristine hydrogel. The 75% of ZnONPs are released from the nanocomposite after 48 h of spontaneous diffusion, allowing the use of the nanocomposite as an antibacterial agent., the agar diffusion test presents an inhibition halo againstbacteria 50% higher than the unloaded hydrogel. Also, the PAAm-Hema-ZnONPs live/dead test shows 54% of dead cells more than the hydrogel. These results suggest that the easy, one-step way generated composites can be used in biomedical applications as antimicrobial agents.
本工作报道了一种由氧化锌纳米粒子分散在聚(丙烯酰胺-共-羟乙基甲基丙烯酸酯)基质(PAAm-Hema-ZnONPs)中的纳米复合材料的抗菌活性。描述了 PAAm-Hema 交联网络内 ZnONPs 的合成。此外,还分析了 PAAm-Hema-ZnONPs 纳米复合材料的物理化学性质。结果证实,PAAm-Hema 水凝胶提供了生成 ZnONPs 的优良支架。水凝胶中 ZnONPs 的存在通过紫外-可见光谱(在 320nm 处有一个带)、红外光谱(在 470cm 处有一个峰)、SEM 和 TEM 图像得到证实。与原始水凝胶相比,PAAm-Hema 中 NPs 的存在使溶胀百分比降低了 70%,杨氏模量降低了 33.7%。纳米复合材料在 48 小时的自发扩散后有 75%的 ZnONPs 释放出来,这使得纳米复合材料可以用作抗菌剂。琼脂扩散试验显示,对细菌的抑制圈比未负载的水凝胶高 50%。此外,PAAm-Hema-ZnONPs 的死活试验显示,死亡细胞比水凝胶多 54%。这些结果表明,这种简单的一步法生成的复合材料可以用作生物医学应用中的抗菌剂。