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Phyco-synthesis of Silver Nanoparticles Mediated from Marine Algae Sargassum myriocystum and Its Potential Biological and Environmental Applications

机译:植物合成的银纳米粒子介导的野生藻类肉豆蔻藻肌肌腱及其潜在的生物和环境应用

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摘要

The present study aims at developing an innovative eco-friendly process in a way to generate safer and more stable silver nanopartides (Ag-NPs) with a high purity by means of Sargassum myriocystum aqueous extract. The Ag-NPs formation was preliminary confirmed by UV-Visible spectroscopy analysis based on band of surface plasmon resonance appeared at 420 nm. X-ray diffraction spectrum and Fourier Transform Infrared spectrometer confirmed the crystalline in nature and phyco-molecules involved in the synthesis of Ag-NPs, respectively. The results obtained from the Transmission Electron Microscopy and Scanning Electron Microscopy demonstrated that the synthesized Ag-NPs were well dispersed hexagonal shape with average size of 20 ± 2.2 nm. The Energy Dispersive X-ray spectroscopy results observed a strong band at 3 keV proved the presence of metallic Ag ions in the Ag-NPs. The significant antibacterial activity was showed that Ag-NPs against clinical pathogens (Staphylococcus aureus, Proteus vulgaris, Escherichia coli, Pseudomonas aeruginosa, S. epidermidis, and Klebsiella pneumoniae). Larvicidal activity against the mosquitos Aedes aegypti and Culex quinquefasciatus and anti-biofilm activity was assessed using phyco-molecule coated Ag NPs. Further, anticancer activity results showed that the 50% inhibitory concentration (IC50) noticed at 73.66 pg/mL using MTT assay against human cervical carcinoma (HeLa) cells. In addition, the phyco-synthesized Ag-NPs exhibited potential photocatalytic activity against methylene blue (MB). The maximum percent of MB degradation was observed at 98% within 60 min. Therefore, the present outcomes clearly revealed that the phyco-synthesized Ag-NPs could be used for effective nano-drug for anticancer, prevention of several bacterial strain infections, control the vector borne diseases, as well as to adequately degraded the organic dyes to promising and economical strategy in industries which involve dyeing process.
机译:本研究旨在开发一种创新的生态友好过程,以一种通过Sargassum Myriocystum含水提取物产生更加纯度的更安全和更稳定的银纳米粒子(Ag-NPS)。通过基于表面等离子体共振带出现在420nm的表面等离子体共振的紫外线光谱分析,初步证实了AG-NPS形成。 X射线衍射光谱和傅里叶变换红外光谱仪分别证实了涉及合成Ag-NP的性质和植物分子的结晶。从透射电子显微镜和扫描电子显微镜获得的结果表明,合成的Ag-NPS很好地分散六边形形状,平均尺寸为20±2.2nm。能量分散X射线光谱结果观察到3 KeV的强带证明了Ag-NPS中金属Ag离子的存在。显示出显着的抗菌活性,表明Ag-NPS针对临床病原体(金黄色葡萄球菌,Proteus Ventaris,大肠杆菌,假单胞菌Aeruginosa,S.表皮和Klebsiella Pneumoniae)。利用植物分子涂覆的Ag NPS评估对蚊虫AEDES AEDES和CULEX Quinquefascastus和抗生物膜活性的幼虫活性。此外,抗癌活性结果表明,使用MTT测定法在73.66pg / ml下,使用MTT测定对人宫颈癌(HELA)细胞进行50%抑制浓度(IC 50)。此外,浮藻合成的AG-NPS表现出对亚甲基蓝(MB)的潜在光催化活性。在60分钟内以98%观察到Mb降解的最大百分比。因此,本结果清楚地表明,植物合成的AG-NPS可用于抗癌的有效纳米药物,预防几种细菌菌株感染,控制载体传播的疾病,以及充分降解有机染料至有前途涉及染色过程的产业经济战略。

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