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首页> 外文期刊>RSC Advances >Variation in surface properties, metabolic capping, and antibacterial activity of biosynthesized silver nanoparticles: comparison of bio-fabrication potential in phytohormone-regulated cell cultures and naturally grown plants
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Variation in surface properties, metabolic capping, and antibacterial activity of biosynthesized silver nanoparticles: comparison of bio-fabrication potential in phytohormone-regulated cell cultures and naturally grown plants

机译:生物合成银纳米粒子的表面性质,代谢封帽和抗菌活性的变化:植物激素调节细胞培养物中生物制造电位和天然生长植物的比较

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摘要

We compared surface properties, metabolic capping and antibacterial activity of silver nanoparticles, synthesized through extracts of cell cultures of Fagonia indica and its naturally grown form. Extracts from cell cultures (produced with thidiazuron (TDZ) or melatonin (MLN)) were compared to the naturally grown whole plant extracts (WPEs) for their reducing potential, and their effects on physical and biochemical properties of the biosynthesized silver nanoparticles. UV-Vis spectroscopy revealed that the surface plasmon resonance peaked at λ = 415 nm for MLN-AgNPs, λ = 430 nm for TDZ-AgNPs and λ = 460–465 nm for WPE-AgNPs. Transmission electron microscopy and energy dispersive X-rays of AgNPs showed that compared to WPE-AgNPs (mean diameter = 22 nm), extracts from MLN- and TDZ-induced cell cultures produced particles with spherical shapes and smaller diameters ( i.e. mean diameter = 15 nm and 19 nm, respectively). Size distribution analysis also showed that TDZ-AgNPs were nearer to a symmetric distribution in terms of diameter (skewness = 0.80) as compared to WPE-AgNPs (skewness = 0.9) and MLN-AgNPs (skewness = 1.4). Furthermore, MLN-induced cell culture extracts produced AgNPs in higher concentration (210 μg mL ~(?1) ) compared to AgNPs from TDZ-induced cell culture extracts (160 μg mL ~(?1) ) and WPE (138 μg mL ~(?1) ). Two-way comparisons of LC-MS/MS profiles of TDZ-AgNPs, MLN-AgNPs, and WPE-AgNPs revealed differences in their secondary metabolite profiles, which might account for differences in their differential response in bio-fabrication, and size distribution. Activity against different pathogenic bacterial strains, Escherichia coli , Bacillus cereus , Xanthomonas citri , Agrobacterium tumefaciens , Streptomyces griseus , and Erwinia carotovora suggested that MLN-AgNPs were more effective compared to TDZ- and WPE-AgNPs. These results indicated that phytohormones induced cell cultures can enhance the production, physical and biochemical properties of AgNPs.
机译:我们比较了银纳米粒子的表面性质,代谢封盖和抗菌活性,通过细胞培养物的细胞培养物和其天然生长的形式合成。将来自细胞培养物(用噻嗪(TDZ)或褪黑激素(MLN)产生的萃取物与天然生长的全植物提取物(WPE)进行比较,以及它们对生物合成银纳米颗粒的物理和生化特性的影响。 UV-Vis光谱显示,对于MLN-AgNP,λ= 430nm的表面等离子体共振达到λ= 415nm,对于WPE-AgNP,λ= 460-465nm。透射电子显微镜和agnps的能量分散X射线显示,与WPE-agnps(平均直径= 22nm)相比,来自MLN和TDZ诱导的细胞培养物的提取物产生具有球形形状和较小的直径的颗粒(即平均直径= 15 NM和19 nm)分别)。与WPE-AgNP(Skewness = 0.9)和MLN-AgNP(Skewness = 1.4)相比,尺寸分布分析还显示TDZ-AgNP在直径(Skewness = 0.80)方面较近对称分布。此外,与来自TDZ诱导的细胞培养提取物(160μgml〜(α1))和WPE(138μg×1))和WPE(138μg×1))和WPE(138μg×1))和WPE(138μg〜 (?1))。 TDZ-AgNP,MLN-AGNP和WPE-AGNP的LC-MS / MS谱的双向比较显示了其辅酶次级代谢物谱的差异,这可能会考虑其生物制造中差异响应和尺寸分布的差异。针对不同致病细菌菌株的活动,大肠杆菌,芽孢杆菌,Xanthomonas Citri,Xanthomonas Citri,Tumefaciens,Streptomyces Griseus和Erwinia Carotovora的表明,与TDZ-和WPE-AgNP相比,MLN-AgNP更有效。这些结果表明,植物激素诱导细胞培养物可以增强AgNP的生产,物理和生化特性。

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