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A Bacteriophage Mediated Gold Nanoparticles Synthesis and Their Anti-biofilm Activity

机译:噬菌体介导的金纳米颗粒的合成及其抗生物膜活性

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摘要

In the present study, gold nanoparticles (AuNPs) synthesis was carried out by using a rare bacteriophage which is morphologically similar to 7–11 phages of the C3 morphotype of tailed phage belonging to Podoviridae family as green route. Effect of various physiological parameters like pH, temperature and concentration of gold chloride salt on AuNPs synthesis was studied. The reaction mixtures have shown vivid colours at various physiological parameters. Phage inspired AuNPs were further characterized by using different techniques such as UV–Vis spectrophotometry, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), X-ray diffraction (XRD) and dynamic light scattering (DLS). DLS study revealed synthesis of various sizes of AuNPs in the range of 20–100 nm. SEM studies revealed synthesis of varied shaped AuNPs, viz., spheres, hexagons, triangles, rhomboids and rectangular etc. The presence of Au in the nanostructures was confirmed by EDS. The XRD pattern reflects the crystalline nature and nano size of AuNPs. These phage inspired AuNPs showed anti-bacterial activity against different bacterial pathogens. Anti-biofilm activity of AuNPs was evaluated on a glass slide. It was noticed that at 0.2 mM concentration of these AuNPs about 80% of biofilm formation by Pseudomonas aeruginosa, a human pathogen was inhibited. Thus, the phage inspired AuNPs synthesis could be potential therapeutic agents against human pathogens.
机译:在本研究中,金纳米颗粒(AuNPs)的合成是通过使用一种罕见的噬菌体进行的,该噬菌体的形态类似于属于Podoviridae家族的尾状噬菌体C3形态的7-11个噬菌体作为绿色途径。研究了pH,温度和氯化金盐浓度等各种生理参数对AuNPs合成的影响。反应混合物在各种生理参数下显示出鲜艳的颜色。噬菌体激发的AuNPs通过使用不同的技术进一步表征,例如UV-Vis分光光度法,扫描电子显微镜(SEM),能量色散谱(EDS),X射线衍射(XRD)和动态光散射(DLS)。 DLS研究揭示了20-100 nm范围内各种大小的AuNP的合成。 SEM研究表明,合成了各种形状的AuNP,即球形,六边形,三角形,菱形和矩形等。通过EDS证实了纳米结构中Au的存在。 XRD图谱反映了AuNP的晶体性质和纳米尺寸。这些噬菌体激发的AuNPs对不同的细菌病原体显示出抗菌活性。在载玻片上评估了AuNPs的抗生物膜活性。注意到在0.2mM的这些AuNPs浓度下,铜绿假单胞菌约80%的生物膜形成抑制了人类病原体。因此,噬菌体激发的AuNPs合成可能是针对人类病原体的潜在治疗剂。

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