Illanes Tormena Renata Pascoal, Rosa Eliane Vieira, Oliveira Mota Bruna de Fátima, Chaker Juliano Alexandre, Fagg Christopher William, Freire Daniel Oliveira, Martins Paula Melo, Rodrigues da Silva Izabel Cristina, Sousa Marcelo Henrique
Green Nanotechnology Group, Faculty of Ceilandia, University of Brasilia Centro Metropolitano, Ceilandia Brasilia DF 72220-900 Brazil
Federal Institute of Education, Science and Technology Goiano Ceres GO 76300-000 Brazil.
RSC Adv. 2020 Jun 1;10(35):20676-20681. doi: 10.1039/d0ra03240a. eCollection 2020 May 27.
We describe here a green method for the preparation of silver nanoparticles (AgNPs), by a microwave-assisted synthesis route using underbark extract, with antibacterial activity. After optimizing the synthesis parameters with a Box-Benhken designed experiment, samples were characterized by powder XRD, TEM, UV-Vis spectroscopy, FTIR and zetametry. Using the overall optimized conditions of synthesis - time of reaction 15 min at 200 °C and plant extract/AgNO volume ratio equal to 10% - highly crystalline ∼13.4 nm-sized spherical AgNPs in a well-dispersed colloidal state were obtained. It was also proved that the plant extract compounds act as reductant and capping agents during synthesis to functionalize AgNPs, resulting in a negatively charged surface with high values of zeta potential in a wide range of pH, from acidic to alkaline media. Biological activity tests against and and cell viability experiments showed that synthesized AgNPs were not toxic to HaCaT mammalian cells and presented a high efficiency against Gram-positive bacteria (). This was associated with the synergistic combination of AgNP silver cores with the capping layer containing natural compounds with antimicrobial properties and considered an alternative to the AgNPs commonly obtained from conventional routes that present antibacterial effectiveness preferentially against Gram-negative strains.
我们在此描述一种通过微波辅助合成路线,利用树皮提取物制备具有抗菌活性的银纳米颗粒(AgNPs)的绿色方法。通过Box - Benhken设计实验优化合成参数后,采用粉末XRD、TEM、紫外 - 可见光谱、FTIR和zeta电位测定法对样品进行表征。使用合成的整体优化条件——在200℃下反应15分钟,植物提取物与硝酸银的体积比等于10%——获得了高度结晶的、尺寸约为13.4nm的球形AgNPs,呈良好分散的胶体状态。还证明了植物提取物化合物在合成过程中充当还原剂和封端剂,使AgNPs功能化,从而在从酸性到碱性的广泛pH范围内产生具有高zeta电位值的带负电表面。针对金黄色葡萄球菌和大肠杆菌的生物活性测试以及细胞活力实验表明,合成的AgNPs对HaCaT哺乳动物细胞无毒,并且对革兰氏阳性菌(金黄色葡萄球菌)具有高效性。这与AgNP银核与含有具有抗菌特性的天然化合物的封端层的协同组合有关,并且被认为是通常通过传统路线获得的AgNPs的替代方案,传统路线获得的AgNPs优先对革兰氏阴性菌株具有抗菌效果。