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首页> 外文期刊>Journal of Applied Phycology >Comparative studies of three novel freshwater microalgae strains for synthesis of silver nanoparticles: insights of characterization, antibacterial, cytotoxicity and antiviral activities
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Comparative studies of three novel freshwater microalgae strains for synthesis of silver nanoparticles: insights of characterization, antibacterial, cytotoxicity and antiviral activities

机译:三种新型淡水微藻菌株合成银纳米粒子的比较研究:表征,抗菌,细胞毒性和抗病毒活性的见解

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摘要

The therapeutic efficacy of universal drug-delivery systems depends on their capability to escape the immune system by overcoming the biological barriers of the body and concentrate at target tissues to eradicate only diseased cells. Biologically synthesized nanoparticle systems possess almost all of these qualities and utilize their targeting ability through cellular membrane interactions and making the targeting system biocompatible. In the present study, microalgae-mediated silver nanoparticles (AgNPs) targeted bacterial, fungal, cancerous and viral infected cells without harming normal cells. These AgNPs provide a comparative study on broader range of size and shape, synthesized by ethanolic extract of three different freshwater microalgae species, Dictyosphaerium sp. strain HM1 (DHM1), Dictyosphaerium sp. strain HM2 (DHM2) and Pectinodesmus sp. strain HM3 (PHM3). Characterization of AgNPs was done by XRD, SEM, TEM, EDS, FTIR and UV-Vis spectrophotometry. Significant activity against 14 bacterial strains, the fungal strain Candida albicans, hepatocellular carcinoma (HepG2) and breast cancer (MCF7) cell lines, and Newcastle Disease Virus (NDV) on Huh7-infected cells suggest the potential use of microalgae extract prepared nanoparticles in biomedicine, pharmaceutics and drug delivery.
机译:通用药物输送系统的治疗效果取决于它们通过克服身体的生物屏障和浓缩靶组织来消除患病细胞来逃避免疫系统的能力。生物合成的纳米粒子系统具有几乎所有这些品质,并通过细胞膜相互作用利用它们的靶向能力,并使靶向系统生物相容性。在本研究中,微藻介导的银纳米颗粒(AGNPS)靶向细菌,真菌,癌症和病毒感染细胞不损伤正常细胞。这些AGNP提供了更广泛的尺寸和形状的比较研究,通过三种不同淡水微藻物种的乙醇提取物合成,Dicty ospaerium sp。菌株HM1(DHM1),Dictyyosphaerium SP。菌株HM2(DHM2)和pectINODESMUS SP。菌株HM3(PHM3)。通过XRD,SEM,TEM,EDS,FTIR和UV-Vis分光光度法进行AgNP的表征。针对14个细菌菌株,真菌菌株念珠菌,肝细胞癌(Hepg2)和乳腺癌(MCF7)细胞系(MCF7)细胞系(NDV)的显着活性表明,在生物医学中,微藻提取物的潜在用途潜在使用Microalgae提取物,药剂药和药物递送。

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