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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Catalytic, antibacterial and antibiofilm efficacy of biosynthesised silver nanoparticles using Prosopis juliflora leaf extract along with their wound healing potential
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Catalytic, antibacterial and antibiofilm efficacy of biosynthesised silver nanoparticles using Prosopis juliflora leaf extract along with their wound healing potential

机译:使用ProsoPIS Juliflora叶提取物以及伤口愈合潜力,生物合成银纳米粒子的催化,抗菌和抗菌和抗菌菌株的疗效

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The present study focuses on the catalytic, antibacterial and antibiofilm efficacy of silver nanoparticles (AgNPs) in an easy, rapid and eco-friendly pathway. Herein, we have synthesised AgNPs using an aqueous extract of P. juliflora leaf. The bioactive compounds present in the extract are responsible for the reduction of Ag+ to Ag-0. The particle synthesis was first observed by visual color change and then characterized using UV-visible spectroscopy to confirm the formation of AgNPs. The synthesis conditions were then optimised using critical parameters such as reaction time, AgNO3 concentration, extract to AgNO3 ratio and temperature of the reaction. The hydrodynamic size of the AgNPs with Dynamic light scattering (DLS) was 55.24 nm, while, was in the range of 10-20 nm as determined through Transmission Electron Microscopy (TEM). Further, Fourier transform infrared spectroscopy (FTIR) studies were conducted to discern the functional groups or compounds responsible for the reduction of silver nitrate as well as the capping of silver nanoparticles. Later, X-ray diffraction (XRD) results showed crystalline nature of the biosynthesized AgNPs. To evaluate their antibacterial potential, AgNPs were assessed through disc-diffusion assay, which resulted in an appreciable dose-dependent activity. The antibacterial potential was investigated through disc-diffusion assay against E. coli and P. aeruginosa. The Congo red agar (CRA) plate assay successfully revealed the anti-biofilm activity against B. subtilis and P. aeruginosa. Further, the catalytic activity of synthesised AgNPs was assessed against azo dyes such a Methylene Blue (MB) and Congo Red (CR) that resulted in its effective degradation of toxic compounds in a short span of time. Further, AgNPs were assessed for their wound healing potential.
机译:本研究侧重于银纳米颗粒(AgNP)的催化,抗菌和抗生素在一种简单,快速和环保的途径中的疗效。在此,我们使用P.Juliflora叶的水质提取物合成AgNP。提取物中存在的生物活性化合物负责减少Ag +至Ag-0。首先通过视觉颜色改变观察颗粒合成,然后使用UV可见光谱表征以确认agnps的形成。然后使用临界参数如反应时间,AgNO 3浓度,提取至AgNO3比和反应温度的优化合成条件。具有动态光散射(DLS)的AgNP的流体动力学尺寸为55.24nm,而通过透射电子显微镜(TEM)测定的10-20nm。此外,进行傅里叶变换红外光谱(FTIR)研究以辨别负责减少硝酸银的官能团或化合物以及银纳米颗粒的封盖。后来,X射线衍射(XRD)结果显示了生物合成的agnps的结晶性质。为了评估它们的抗菌电位,通过盘扩散测定评估AgNP,这导致了可观的剂量依赖性活性。通过对大肠杆菌和P.铜绿假单胞菌的椎间盘扩散测定来研究抗菌电位。刚果红琼脂(CRA)板测定成功揭示了针对B.枯草芽孢杆菌和铜绿假单胞菌的抗生物膜活性。此外,对合成的AgNP的催化活性进行评估偶氮染料这种亚甲基蓝(Mb)和刚果红色(Cr),导致在短时间内有效降解有毒化合物。此外,评估AgNP的伤口愈合潜力。

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