Suwan Temsiri, Khongkhunthian Sakornrat, Okonogi Siriporn
Interdisciplinary Program in Nanoscience and Nanotechnology, Faculty of Science, Chiang Mai University.
Department of Restorative Dentistry and Periodontology, Faculty of Dentistry, Chiang Mai University.
Drug Discov Ther. 2019;13(2):62-69. doi: 10.5582/ddt.2019.01024.
In the present study, silver nanoparticles (AgNPs) were synthesized by green synthesis using Psidium guajava aqueous extract (PE) as a reducing agent and silver nitrate (AgNO3) as a precursor. The obtained AgNPs showed maximum absorbance at 455 nm. The results from energy-dispersive X-ray spectroscopy demonstrate Ag signal at 88.33% weight. The particle image under scanning electron microscopy is spherical shape. The average size of the freshly prepared AgNPs is 96 ± 4 nm but is dramatically increases during storage due to particle aggregation. Coating AgNPs with polymeric micelles of poloxamer 407 (F127) at the suitable ratio can decrease the size of the freshly prepared AgNPs to 70.4 ± 0.8 nm and significantly prevent AgNPs from aggregation. The obtained coated AgNPs showed high effective on inhibition of Candida albicans. Isotonic solutions of 0.9% NaCl and phosphate buffer solution pH 7.4 can cause some extend of aggregation and increase the particle size of the coated AgNPs but the increased size is in the colloidal range that no precipitation occurs during 90 days at room temperature. From our results, it is suggested that the 1:1 ratio of AgNPs/F127 is the most suitable ratio to obtain the AgNPs loaded polymeric micelles with high stability, small particle size, and high inhibitory activity against C. albicans. These AgNPs are the promising antifungal nanomaterials for further study in animal model.
在本研究中,采用番石榴叶水提取物(PE)作为还原剂、硝酸银(AgNO₃)作为前驱体,通过绿色合成法制备了银纳米颗粒(AgNPs)。所制备的AgNPs在455nm处有最大吸光度。能量色散X射线光谱分析结果表明,Ag的重量占比为88.33%。扫描电子显微镜下的颗粒图像呈球形。新制备的AgNPs平均粒径为96±4nm,但在储存过程中由于颗粒聚集而显著增大。以合适比例用泊洛沙姆407(F127)的聚合物胶束包覆AgNPs,可将新制备的AgNPs粒径减小至70.4±0.8nm,并显著防止AgNPs聚集。所得到的包覆AgNPs对白色念珠菌具有高效抑制作用。0.9%NaCl等渗溶液和pH7.4的磷酸盐缓冲溶液会导致包覆AgNPs出现一定程度的聚集并增大粒径,但增大后的粒径仍在胶体范围内且在室温下90天内不会发生沉淀。根据我们的结果,建议AgNPs/F127的比例为1:1是获得具有高稳定性、小粒径且对白色念珠菌具有高抑制活性的负载聚合物胶束AgNPs最合适的比例。这些AgNPs是有前景的抗真菌纳米材料,可用于在动物模型中进一步研究。