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Biofabrication and characterization of silver nanoparticles using aqueous extract of seaweed Enteromorpha compressa and its biomedical properties

机译:海藻小肠藻含水提取物的生物纳米银的制备表征及其生物医学特性

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摘要

Green synthesis of nanoparticles using seaweeds are fascinating high research attention nowadays and also gaining center of attention in biomedical applications. In this work, we have synthesized biocompatible and functionalized silver nanoparticles using an aqueous extract of seaweed Enteromorpha compressa as a reducing as well as stabilizing agent and their efficient antimicrobial and anticancer activity are reported here. The UV–vis spectra of AgNPs showed the characteristics SPR absorption band at 421 nm. The chemical interaction and crystalline nature of the AgNPs were evaluated by FT-IR and XRD studies. The XRD result of AgNPs shows typical Ag reflection peaks at 38.1°, 44.2°, 64.4° and 77.1° corresponding to (111), (200), (220) and (311) Bragg’s planes. The surface morphology and composition of the samples were observed by HRTEM, EDS and SAED pattern analyses. Spherical shaped Ag nano structures were observed in the size ranges between 4 and 24 nm with clear lattice fringes in the HRTEM image. This report reveals that seaweed mediated synthesis of AgNPs and sustained delivery of Ag ions to the bacterial and fungal surface have been reducing their growth rate which was evaluated by well diffusion assay. The synthesized AgNPs showed favorable cytotoxicity against Ehlrich Ascites Carcinoma (EAC) cells with IC50 value was recorded at 95.35 μg mL−1. This study showed cost effective silver nanoparticles synthesis with excellent biocompatibility and thus could potentially be utilized in biomedical and pharmaceutical applications.
机译:如今,使用海藻进行纳米颗粒的绿色合成吸引了众多研究关注,并且在生物医学应用中也引起了人们的关注。在这项工作中,我们使用海藻小肠Enteromorpha compressa的水提取物作为还原剂和稳定剂合成了生物相容性和功能化的银纳米颗粒,并在此报道了其有效的抗菌和抗癌活性。 AgNPs的紫外-可见光谱显示在421 nm处具有特征SPR吸收带。 AgNPs的化学相互作用和晶体性质通过FT-IR和XRD研究进行了评估。 AgNPs的XRD结果显示,典型的Ag反射峰位于38.1°,44.2°,64.4°和77.1°处,分别对应于(111),(200),(220)和(311)布拉格平面。通过HRTEM,EDS和SAED图案分析观察样品的表面形态和组成。在HRTEM图像中观察到球形Ag纳米结构的尺寸范围在4到24 nm之间,并带有清晰的晶格条纹。该报告表明,海藻介导的AgNPs的合成以及Ag离子向细菌和真菌表面的持续传递一直在降低其生长速率,这是通过孔扩散测定法进行评估的。合成的AgNPs对Ehlrich腹水癌细胞(EAC)具有良好的细胞毒性,IC50值记录为95.35μgmL -1 。这项研究表明,具有优良生物相容性的具有成本效益的银纳米颗粒合成方法,因此可潜在地用于生物医学和制药应用。

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