Department of Plant Biology & Biotechnology, Loyola College, Chennai, Tamil Nadu 600 034, India.
Department of Plant Biology & Biotechnology, Loyola College, Chennai, Tamil Nadu 600 034, India.
J Photochem Photobiol B. 2019 Feb;191:65-74. doi: 10.1016/j.jphotobiol.2018.12.010. Epub 2018 Dec 14.
Eco-friendly biosynthesis of nanoparticles from medicinal plants as reducing agent has gained importance due to its potential therapeutic uses. In the present study Silver nanoparticles (AgNPs) were eco-friendly synthesized using the leaf extracts of the medicinal plant Tropaeolum majus. The obtained AgNPs were characterized by UV - visible spectrum, FTIR, SEM and XRD which clearly showed the reduction of Ag ions to Ag. In addition, the aqueous and ethanolic extracts were analyzed for phytochemicals and its antioxidant activities. GC-MS spectrum showed the presence of 25 compounds with benzeneacetic acid as the dominant contents. The synthesized AgNPs revealed maximum absorption spectrum at 463 nm and FTIR vibrational peaks at 3357.46, 21,966.52, 2118.42, 1637.27, 658.571 and 411.728 cm respectively. SEM and XRD studies evidenced the nature of nanocrystalline with face centered cubic (fcc) crystal structure. Both AgNPs and plant extracts showed more inhibition activity against Pseudomonas aeroginosa compared to other bacteria with MIC value of 6.25 μg/ml. Antifungal activities was higher for Penicilium notatum with MIC value 31.2 μg/ml. The IC50 values for MCF7 for aqueous extract were found to be 4.68 μg/ml, ethanol extract 7.5 μg/ml, AgNPs 2.49 μg/ml, and doxorubicin 1.4 μg/ml. The IC50 values for VERO cell line for aqueous extract was 8.1 μg/ml, ethanol extract with 6.8 μg/ml, silver nanoparticles 5.3 μg/ml and doxorubicin 2.6 μg/ml respectively. Conclusively, the antibacterial, antifungal, antioxidant and anticancer properties of the synthesized AgNPs from Tropaeolum majus act as major therapeutic drug for microbial infectious disease and other health associated disorders.
由于其潜在的治疗用途,使用药用植物作为还原剂的环保型纳米粒子的生物合成已经变得非常重要。在本研究中,使用药用植物旱金莲花的叶提取物来环保型合成银纳米粒子(AgNPs)。通过 UV-可见光谱、FTIR、SEM 和 XRD 对所获得的 AgNPs 进行了表征,这些结果清楚地表明 Ag 离子被还原为 Ag。此外,还对水提物和醇提物进行了分析,以研究其所含的植物化学物质及其抗氧化活性。GC-MS 图谱显示存在 25 种化合物,其中苯乙酸是主要成分。合成的 AgNPs 在 463nm 处显示出最大吸收光谱,FTIR 振动峰位于 3357.46、21.966.52、2118.42、1637.27、658.571 和 411.728cm 处。SEM 和 XRD 研究表明,AgNPs 具有纳米晶的性质,属于面心立方(fcc)晶体结构。AgNPs 和植物提取物对铜绿假单胞菌的抑制活性均高于其他细菌,MIC 值为 6.25μg/ml。对青霉菌的抑菌活性更高,MIC 值为 31.2μg/ml。水提物对 MCF7 的 IC50 值为 4.68μg/ml,乙醇提取物为 7.5μg/ml,AgNPs 为 2.49μg/ml,多柔比星为 1.4μg/ml。水提物对 VERO 细胞系的 IC50 值为 8.1μg/ml,乙醇提取物为 6.8μg/ml,AgNPs 为 5.3μg/ml,多柔比星为 2.6μg/ml。综上所述,旱金莲花合成的 AgNPs 具有抗菌、抗真菌、抗氧化和抗癌特性,可作为治疗微生物感染性疾病和其他与健康相关疾病的主要治疗药物。